Home
  • About this
  • GitHub
  • Leave comments

A comprehensive ICN/CCN/NDN Bibliography

February 24, 2018

The bibliography on this page comprises a large collection of references (600+) in the areas of Information-Centric Networking (ICN), Content-Centric Networking (CCN) and Named-Data Networking (NDN). For convenience, separate pages provide references focused more narrowly on ICN, CCN, or NDN, but note that in many cases, references show up in more than one of the lists:

  • ICN bibliography
  • CCN bibliography
  • NDN bibliography

For copyright reasons, we cannot publicly share the PDFs of the papers, but if you are working with the authors, please contact us and we will share the Paperpile folder with you.

References

Abane, A., Daoui, M., Bouzefrane, S., and Muhlethaler, P. 2017. NDN-over-ZigBee: A ZigBee support for named data networking. Future generations computer systems: FGCS. https://doi.org/10.1016/j.future.2017.09.053.

AbdAllah, E.G., Hassanein, H.S., and Zulkernine, M. 2015. A survey of security attacks in Information-Centric networking. IEEE Communications Surveys Tutorials 17, 3, 1441–1454. https://doi.org/10.1109/COMST.2015.2392629.

AbdAllah, E.G., Zulkernine, M., and Hassanein, H.S. 2016. DACPI: A decentralized access control protocol for information centric networking. 2016 IEEE international conference on communications (ICC), 1–6. https://doi.org/10.1109/ICC.2016.7511198.

Abdullahi, I., Arif, S., and Hassan, S. 2015. Survey on caching approaches in information centric networking. Journal of Network and Computer Applications 56, 48–59. https://doi.org/10.1016/j.jnca.2015.06.011.

Abraham, H.B. and Crowley, P. 2016. Forwarding strategies for applications in named data networking. 2016 ACM/IEEE symposium on architectures for networking and communications systems (ANCS), 111–112. https://doi.org/10.1145/2881025.2889475.

Acs, G., Conti, M., Gasti, P., Ghali, C., and Tsudik, G. 2013. Cache privacy in Named-Data networking. 2013 IEEE 33rd international conference on distributed computing systems, ieeexplore.ieee.org, 41–51. https://doi.org/10.1109/ICDCS.2013.12.

Adrichem, N.L.M. van and Kuipers, F.A. 2013. Globally accessible names in named data networking. 2013 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 345–350. https://doi.org/10.1109/INFCOMW.2013.6970714.

Adrichem, N.L.M. van and Kuipers, F.A. 2015. NDNFlow: Software-defined named data networking. Proceedings of the 2015 1st IEEE conference on network softwarization (NetSoft), ieeexplore.ieee.org, 1–5. https://doi.org/10.1109/NETSOFT.2015.7116131.

Afanasyev, A. 2013. Addressing operational challenges in named data networking through NDNS distributed database. University of California, Los Angeles.

Afanasyev, A., Burke, J., Crowley, P., DiBenedetto, S., Thompson, J., Zhang, B., and Zhang, L. 2014a. An introduction to NDN and its software architecture. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 1–2. https://doi.org/10.1145/2660129.2666709.

Afanasyev, A., Burke, J., Zhang, L., Claffy, K., Wang, L., Jacobson, V., Crowley, P., Papadopoulos, C., and Zhang, B. 2014b. Named data networking. ACM SIGCOMM Computer Communication Review 44, 3, 66–73.

Afanasyev, A., Halderman, J.A., Ruoti, S., Seamons, K., Yu, Y., Zappala, D., and Zhang, L. 2016. Content-based security for the web. Proceedings of the 2016 new security paradigms workshop, ACM, 49–60. https://doi.org/10.1145/3011883.3011890.

Afanasyev, A., Jiang, X., Yu, Y., Tan, J., Xia, Y., Mankin, A., and Zhang, L. 2017a. NDNS: A DNS-Like name service for NDN. 2017 26th international conference on computer communication and networks (ICCCN), ieeexplore.ieee.org, 1–9. https://doi.org/10.1109/ICCCN.2017.8038461.

Afanasyev, A., Jiang, X., Yu, Y., Tan, J., Xia, Y., Mankin, A., and Zhang, L. 2017b. NDNS: A DNS-Like name service for NDN. 2017 26th international conference on computer communication and networks (ICCCN), 1–9. https://doi.org/10.1109/ICCCN.2017.8038461.

Afanasyev, A., Mahadevan, P., Moiseenko, I., Uzun, E., and Zhang, L. 2013a. Interest flooding attack and countermeasures in named data networking. 2013 IFIP networking conference, ieeexplore.ieee.org, 1–9.

Afanasyev, A., Moiseenko, I., and Zhang, L. 2012a. ndnSIM. NDN simulator for NS-3.

Afanasyev, A., Moiseenko, I., Zhang, L., and Others. 2012b. ndnSIM: NDN simulator for NS-3. University of California, Los Angeles, Tech. Rep 4.

Afanasyev, A., Yi, C., and Wang, L. 2013b. Scaling NDN routing: Old tale, new design..

Afanasyev, A., Yi, C., Wang, L., Zhang, B., and Zhang, L. 2015a. Map-and-encap for scaling ndn routing. Technical Report NDN-0005, NDN; named-data.net.

Afanasyev, A., Yi, C., Wang, L., Zhang, B., and Zhang, L. 2015b. SNAMP: Secure namespace mapping to scale NDN forwarding. 2015 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 281–286. https://doi.org/10.1109/INFCOMW.2015.7179398.

Afanasyev, A., Zhu, Z., Yu, Y., Wang, L., and Zhang, L. 2015c. The story of ChronoShare, or how NDN brought distributed secure file sharing back. 2015 IEEE 12th international conference on mobile ad hoc and sensor systems, 525–530. https://doi.org/10.1109/MASS.2015.59.

Aggarwal, M., Nilay, K., and Yadav, K. 2017. Survey of named data networks: Future of internet. International Journal of Information Technology, 1–11.

Agyapong, P.K. and Sirbu, M. 2012. Economic incentives in information- centric networking: Implications for protocol design and public policy. IEEE Communications Magazine 50, 12, 18–26. https://doi.org/10.1109/MCOM.2012.6384447.

Ahlgren, B., Dannewitz, C., Imbrenda, C., Kutscher, D., and Ohlman, B. 2012. A survey of information-centric networking. IEEE Communications Magazine 50, 7, 26–36. https://doi.org/10.1109/MCOM.2012.6231276.

Ahmad, Z., Tahir, M., and Others. 2013. Named data networking (NDN), new approach to future internet architecture design: A survey. International Journal of Informatics and Communication Technology (IJ-ICT) 2, 3, 155–165.

Ahmed, S.H., Bouk, S.H., and Kim, D. 2016a. Content-Centric networks: An overview, applications and research challenges. Springer.

Ahmed, S.H., Bouk, S.H., Yaqub, M.A., Kim, D., and Gerla, M. 2016b. CONET: Controlled data packets propagation in vehicular named data networks. 2016 13th IEEE annual consumer communications networking conference (CCNC), ieeexplore.ieee.org, 620–625. https://doi.org/10.1109/CCNC.2016.7444850.

Ahmed, S.H., Bouk, S.H., Yaqub, M.A., Kim, D., Song, H., and Lloret, J. 2016c. CODIE: Controlled data and interest evaluation in vehicular named data networks. IEEE Transactions on Vehicular Technology 65, 6, 3954–3963. https://doi.org/10.1109/TVT.2016.2558650.

Ahmed, S.H. and Kim, D. 2016. Named data networking-based smart home. ICT Express 2, 3, 130–134. https://doi.org/10.1016/j.icte.2016.08.007.

Aiash, M. and Loo, J. 2015. An integrated authentication and authorization approach for the network of information architecture. Journal of Network and Computer Applications 50, 73–79. https://doi.org/10.1016/j.jnca.2014.06.004.

Al Imem, A. 2015. Comparison and evaluation of digital signature schemes employed in ndn network..

Al-Naday, M.F., Reed, M.J., Trossen, D., and Yang, K. 2014. Information resilience: Source recovery in an information-centric network. IEEE network 28, 3, 36–42. https://doi.org/10.1109/MNET.2014.6843230.

Al-Sheikh, S., Wählisch, M., and Schmidt, T.C. 2015. Revisiting countermeasures against NDN interest flooding. Proceedings of the 2Nd ACM conference on Information-Centric networking, ACM, 195–196. https://doi.org/10.1145/2810156.2812604.

Alajlan, M. and Belghith, A. 2017. Supporting seamless mobility for Real-Time applications in named data networking. Procedia computer science 110, 62–69. https://doi.org/10.1016/j.procs.2017.06.117.

Alderson, D.L. and Doyle, J.C. 2010. Contrasting views of complexity and their implications for Network-Centric infrastructures. IEEE Transactions on Systems, Man, and Cybernetics - Part A: Systems and Humans 40, 4, 839–852. https://doi.org/10.1109/tsmca.2010.2048027.

Alfano, G., Garetto, M., and Leonardi, E. 2016. Content-centric wireless networks with limited buffers: When mobility hurts. IEEE/ACM Transactions on Networking 24, 1, 299–311. https://doi.org/10.1109/TNET.2014.2361935.

Ali, M., Nelson, J., Shea, R., and Freedman, M.J. 2016. Bootstrapping trust in distributed systems with blockchains. USENIX Magazine 41, 3.

Allen, S.M., Chorley, M.J., Colombo, G.B., and Whitaker, R.M. 2012. Opportunistic social dissemination of micro-blogs. Ad Hoc Networks 10, 8, 1570–1585. https://doi.org/10.1016/j.adhoc.2011.04.012.

Almishari, M., Gasti, P., Nathan, N., and Tsudik, G. 2013. Optimizing bi-directional low-latency communication in named data networking. SIGCOMM Comput. Commun. Rev. 44, 1, 13–19. https://doi.org/10.1145/2567561.2567564.

Alsaffar, A.A. and Huh, E.-N. 2013. A framework of n-screen services based on PVR and named data networking in cloud computing. Proceedings of the 7th international conference on ubiquitous information management and communication, ACM, 100:1–100:7. https://doi.org/10.1145/2448556.2448656.

Alston, A. and Refaei, T. 2016. Neutralizing interest flooding attacks in named data networks using cryptographic route tokens. 2016 IEEE 15th international symposium on network computing and applications (NCA), 85–88. https://doi.org/10.1109/NCA.2016.7778598.

Alubady, R., Hassan, S., and Habbal, A. 2017. Pending interest table control management in named data network. Journal of Network and Computer Applications. https://doi.org/10.1016/j.jnca.2017.11.002.

Alzahrani, B.A., Reed, M.J., Riihijärvi, J., and Vassilakis, V.G. 2015. Scalability of information centric networking using mediated topology management. Journal of Network and Computer Applications 50, 126–133. https://doi.org/10.1016/j.jnca.2014.07.002.

Amadeo, M., Briante, O., Campolo, C., Molinaro, A., and Ruggeri, G. 2016a. Information-centric networking for M2M communications: Design and deployment. Computer communications 89-90, 105–116. https://doi.org/10.1016/j.comcom.2016.03.009.

Amadeo, M., Campolo, C., Iera, A., and Molinaro, A. 2014a. Named data networking for IoT: An architectural perspective. 2014 european conference on networks and communications (EuCNC), ieeexplore.ieee.org, 1–5. https://doi.org/10.1109/EuCNC.2014.6882665.

Amadeo, M., Campolo, C., Iera, A., and Molinaro, A. 2015a. Information centric networking in IoT scenarios: The case of a smart home. 2015 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 648–653. https://doi.org/10.1109/ICC.2015.7248395.

Amadeo, M., Campolo, C., and Molinaro, A. 2012a. Content-centric networking: Is that a solution for upcoming vehicular networks? Proceedings of the ninth ACM international workshop on vehicular inter-networking, systems, and applications, ACM, 99–102. https://doi.org/10.1145/2307888.2307906.

Amadeo, M., Campolo, C., and Molinaro, A. 2012b. CRoWN: Content-Centric networking in vehicular ad hoc networks. IEEE Communications Letters 16, 9, 1380–1383. https://doi.org/10.1109/LCOMM.2012.072012.120282.

Amadeo, M., Campolo, C., and Molinaro, A. 2014b. Multi-source data retrieval in IoT via named data networking. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 67–76. https://doi.org/10.1145/2660129.2660148.

Amadeo, M., Campolo, C., and Molinaro, A. 2014c. Internet of things via named data networking: The support of push traffic. 2014 international conference and workshop on the network of the future (NOF), ieeexplore.ieee.org, 1–5. https://doi.org/10.1109/NOF.2014.7119766.

Amadeo, M., Campolo, C., and Molinaro, A. 2015b. Forwarding strategies in named data wireless ad hoc networks: Design and evaluation. Journal of Network and Computer Applications 50, 148–158. https://doi.org/10.1016/j.jnca.2014.06.007.

Amadeo, M., Campolo, C., and Molinaro, A. 2016b. Information-centric networking for connected vehicles: A survey and future perspectives. IEEE Communications Magazine 54, 2, 98–104. https://doi.org/10.1109/MCOM.2016.7402268.

Amadeo, M., Campolo, C., Molinaro, A., and Mitton, N. 2013. Named data networking: A natural design for data collection in wireless sensor networks. 2013 IFIP wireless days (WD), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/WD.2013.6686486.

Amadeo, M., Campolo, C., Molinaro, A., and Ruggeri, G. 2014d. Content-centric wireless networking: A survey. Computer Networks 72, 1–13. https://doi.org/10.1016/j.comnet.2014.07.003.

Amadeo, M., Campolo, C., Quevedo, J., Corujo, D., Molinaro, A., Iera, A., Aguiar, R.L., and Vasilakos, A.V. 2016c. Information-centric networking for the internet of things: Challenges and opportunities. IEEE network 30, 2, 92–100. https://doi.org/10.1109/MNET.2016.7437030.

Amadeo, M. and Molinaro, A. 2011. CHANET: A content-centric architecture for IEEE 802.11 MANETs. 2011 international conference on the network of the future, ieeexplore.ieee.org, 122–127. https://doi.org/10.1109/NOF.2011.6126671.

Amadeo, M., Molinaro, A., Campolo, C., Sifalakis, M., and Tschudin, C. 2014e. Transport layer design for named data wireless networking. 2014 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 464–469. https://doi.org/10.1109/INFCOMW.2014.6849276.

Ambrosin, M., Compagno, A., Conti, M., Ghali, C., and Tsudik, G. 2016. Security and privacy analysis of NSF future internet architectures..

Ambrosin, M., Conti, M., Gasti, P., and Tsudik, G. 2014. Covert ephemeral communication in named data networking. Proceedings of the 9th ACM symposium on information, computer and communications security, ACM, 15–26. https://doi.org/10.1145/2590296.2590306.

Anastasiades, C., Schmid, T., Weber, J., and Braun, T. 2014. Opportunistic content-centric data transmission during short network contacts. 2014 IEEE wireless communications and networking conference (WCNC), ieeexplore.ieee.org, 2516–2521. https://doi.org/10.1109/WCNC.2014.6952784.

Anastasiades, C., Schmid, T., Weber, J., and Braun, T. 2016. Information-centric content retrieval for delay-tolerant networks. Computer Networks 107, 194–207. https://doi.org/10.1016/j.comnet.2016.03.006.

Anastasiades, C., Thomos, N., Striffeler, A., and Braun, T. 2015. RC-NDN: Raptor codes enabled named data networking. 2015 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 3026–3032. https://doi.org/10.1109/ICC.2015.7248788.

Angius, F., Gerla, M., and Pau, G. 2012. BLOOGO: BLOOm filter based GOssip algorithm for wireless NDN. Proceedings of the 1st ACM workshop on emerging Name-Oriented mobile networking design - architecture, algorithms, and applications, ACM, 25–30. https://doi.org/10.1145/2248361.2248369.

Antunes, R.S., Lehmann, M.B., Mansilha, R.B., Gaspary, L.P., and Barcellos, M.P. 2017. NDNrel: A mechanism based on relations among objects to improve the performance of NDN. Journal of Network and Computer Applications 87, 73–86. https://doi.org/10.1016/j.jnca.2017.03.014.

Arianfar, S., Nikander, P., and Ott, J. 2010a. On content-centric router design and implications. Proceedings of the Re-Architecting the internet workshop, ACM, 5:1–5:6. https://doi.org/10.1145/1921233.1921240.

Arianfar, S., Nikander, P., and Ott, J. 2010b. Packet-level caching for information-centric networking. ACM SIGCOMM, ReArch workshop, researchgate.net.

Arifuzzaman, M., Keping, Y., Nguyen, Q.N., and Takuro, S. 2015. Locating the content in the locality: ICN caching and routing strategy revisited. 2015 european conference on networks and communications (EuCNC), 423–428. https://doi.org/10.1109/EuCNC.2015.7194111.

Arnould, G., Khadraoui, D., and Habbas, Z. 2011. A self-organizing content centric network model for hybrid vehicular ad-hoc networks. Proceedings of the first ACM international symposium on design and analysis of intelligent vehicular networks and applications, ACM, 15–22. https://doi.org/10.1145/2069000.2069004.

Asif Iqbal, S.M. 2018. Adaptive forwarding strategies to reduce redundant interests and data in named data networks. Journal of Network and Computer Applications 106, 33–47. https://doi.org/10.1016/j.jnca.2018.01.013.

Attam, A. and Moiseenko, I. 2013. Ndnblue: Ndn over bluetooth. NDN Technical Report NDN-0015.

Atzori, L., Iera, A., and Morabito, G. 2017. Understanding the internet of things: Definition, potentials, and societal role of a fast evolving paradigm. Ad Hoc Networks 56, 122–140. https://doi.org/10.1016/j.adhoc.2016.12.004.

Azgin, A., Ravindran, R., and Wang, G. 2014a. Mobility study for named data networking in wireless access networks. 2014 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 3252–3257. https://doi.org/10.1109/ICC.2014.6883822.

Azgin, A., Ravindran, R., and Wang, G. 2014b. A scalable Mobility-Centric architecture for named data networking..

Azimdoost, B., Westphal, C., and Sadjadpour, H.R. 2013. On the throughput capacity of information-centric networks. Proceedings of the 2013 25th international teletraffic congress (ITC), ieeexplore.ieee.org, 1–9. https://doi.org/10.1109/ITC.2013.6662941.

Baccala, B. 2002. Data-oriented networking. IETF.

Baccelli, E., Mehlis, C., Hahm, O., Schmidt, T.C., and Wählisch, M. 2014. Information centric networking in the IoT: Experiments with NDN in the wild. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 77–86. https://doi.org/10.1145/2660129.2660144.

Badov, M., Seetharam, A., Kurose, J., Firoiu, V., and Nanda, S. 2014. Congestion-aware caching and search in information-centric networks. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 37–46. https://doi.org/10.1145/2660129.2660145.

Baentsch, M., Baum, L., Molter, G., Rothkugel, S., and Sturm, P. 1997. Enhancing the web’s infrastructure: From caching to replication. IEEE Internet Computing 1, 2, 18–27. https://doi.org/10.1109/4236.601083.

Baid, A., Vu, T., and Raychaudhuri, D. 2012. Comparing alternative approaches for networking of named objects in the future internet. 2012 proceedings IEEE INFOCOM workshops, 298–303. https://doi.org/10.1109/INFCOMW.2012.6193509.

Balogh, A., Imre, S., Lendvai, K., and Szabó, S. 2015. Service mediation in multihop bluetooth low energy networks based on NDN approach. 2015 23rd international conference on software, telecommunications and computer networks (SoftCOM), ieeexplore.ieee.org, 285–289. https://doi.org/10.1109/SOFTCOM.2015.7314123.

Bandara, H.M.N.D. and Jayasumana, A.P. 2013. Distributed, multi-user, multi-application, and multi-sensor data fusion over named data networks. Computer Networks 57, 16, 3235–3248. https://doi.org/10.1016/j.comnet.2013.07.033.

Barakabitze, A.A., Xiaoheng, T., and Tan, G. 2014. A survey on naming, name resolution and data routing in information centric networking (ICN). IJARCCE, 8322–8330. https://doi.org/10.17148/ijarcce.2014.31055.

Barakat, C., Kalla, A., Saucez, D., and Turletti, T. 2013. Minimizing bandwidth on peering links with deflection in named data networking. 2013 third international conference on communications and information technology (ICCIT), ieeexplore.ieee.org, 88–92. https://doi.org/10.1109/ICCITechnology.2013.6579528.

Bari, M.F., Chowdhury, S.R., Ahmed, R., Boutaba, R., and Mathieu, B. 2012. A survey of naming and routing in information-centric networks. IEEE Communications Magazine 50, 12, 44–53. https://doi.org/10.1109/MCOM.2012.6384450.

Barrera, D., Chuat, L., Perrig, A., Reischuk, R.M., and Szalachowski, P. 2017. The SCION internet architecture. https://cacm.acm.org/magazines/2017/6/217735-the-scion-internet-architecture/fulltext.

Baugher, M., Davie, B., Narayanan, A., and Oran, D. 2012. Self-verifying names for read-only named data. 2012 proceedings IEEE INFOCOM workshops, ieeexplore.ieee.org, 274–279. https://doi.org/10.1109/INFCOMW.2012.6193505.

Baumgart, I. and Mies, S. 2007. S/Kademlia: A practicable approach towards secure key-based routing. 2007 International Conference on Parallel and Distributed Systems, IEEE Press, 1–8. https://doi.org/10.1109/ICPADS.2007.4447808.

Bazzi, A., Masini, B.M., Zanella, A., Castro, C.D., Raffaelli, C., and Andrisano, O. 2014. Cellular aided vehicular named data networking. 2014 international conference on connected vehicles and expo (ICCVE), ieeexplore.ieee.org, 747–752. https://doi.org/10.1109/ICCVE.2014.7297650.

Ben Abraham, H., Afanasyev, A., Yu, Y., Zhang, L., DiBenedetto, S., Thompson, J., and Burke, J. 2015. Tutorial: Security and synchronization in named data networking (NDN). Proceedings of the 2Nd ACM conference on Information-Centric networking, ACM, 3–6. https://doi.org/10.1145/2810156.2815105.

Benet, J. 2014. IPFS – content addressed, versioned, P2P file system. Computing Resources Repository arXi:1407.3561.

Bernardini, C., Silverston, T., and Festor, O. 2013. MPC: Popularity-based caching strategy for content centric networks. 2013 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 3619–3623. https://doi.org/10.1109/ICC.2013.6655114.

Bernardini, C., Silverston, T., and Festor, O. 2014. Socially-aware caching strategy for content centric networking. 2014 IFIP networking conference, ieeexplore.ieee.org, 1–9. https://doi.org/10.1109/IFIPNetworking.2014.6857093.

Bernardini, C., Silverston, T., and Festor, O. 2015. A comparison of caching strategies for content centric networking. 2015 IEEE global communications conference (GLOBECOM), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/GLOCOM.2015.7417007.

Bhatia, R., Narlikar, G., Rimac, I., and Beck, A. 2009. UNAP: User-Centric Network-Aware push for mobile content delivery. IEEE INFOCOM 2009, ieeexplore.ieee.org, 2034–2042. https://doi.org/10.1109/INFCOM.2009.5062126.

Bian, C., Zhao, T., Li, X., and Yan, W. 2015. Boosting named data networking for data dissemination in urban VANET scenarios. Vehicular Communications 2, 4, 195–207. https://doi.org/10.1016/j.vehcom.2015.08.001.

Bian, C., Zhu, Z., Afanasyev, A., Uzun, E., and Zhang, L. 2013. Deploying key management on NDN testbed. named-data.net.

Bindel, D., Chen, Y., Eaton, P., Geels, D., Gummadi, R., Rhea, S., Weatherspoon, H., Weimer, W., Wells, C., Zhao, B., and Kubiatowicz, J. 2000. OceanStore: An extremely wideArea storage system. UC Berkeley.

Biswas, T., Chakraborti, A., Ravindran, R., Zhang, X., and Wang, G. 2013. Contextualized information-centric home network. SIGCOMM Comput. Commun. Rev. 43, 4, 461–462. https://doi.org/10.1145/2534169.2491691.

Borgia, E., Gomes, D.G., Lagesse, B., Lea, R., and Puccinelli, D. 2016. Special issue on “internet of things: Research challenges and solutions”. Computer communications 89-90, 1–4. https://doi.org/10.1016/j.comcom.2016.04.024.

Bosch, A. van den, Bogers, T., and Kunder, M. de. 2016. Estimating search engine index size variability: A 9-year longitudinal study. Scientometrics 107, 839–856. https://doi.org/10.1007/s11192-016-1863-z.

Bouk, S.H., Ahmed, S.H., and Kim, D. 2015. Vehicular content centric network (VCCN): A survey and research challenges. Proceedings of the 30th annual ACM symposium on applied computing, ACM, 695–700. https://doi.org/10.1145/2695664.2695844.

Bouk, S.H., Ahmed, S.H., and Kim, D. 2017a. NDN goes deep: Foreseeing the underwater named data networks. Proceedings of the symposium on applied computing, ACM, 642–646. https://doi.org/10.1145/3019612.3019773.

Bouk, S.H., Ahmed, S.H., Kim, D., and Song, H. 2017b. Named-Data-Networking-Based ITS for smart cities. IEEE Communications Magazine 55, 1, 105–111. https://doi.org/10.1109/MCOM.2017.1600230CM.

Bouk, S.H., Ahmed, S.H., Yaqub, M.A., Kim, D., and Gerla, M. 2016. DPEL: Dynamic PIT entry lifetime in vehicular named data networks. IEEE Communications Letters 20, 2, 336–339. https://doi.org/10.1109/LCOMM.2015.2508798.

Braun, T., Hilt, V., Hofmann, M., Rimac, I., Steiner, M., and Varvello, M. 2011. Service-Centric networking. 2011 IEEE international conference on communications workshops (ICC), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/iccw.2011.5963587.

Burke, J. 2013. Video streaming over named data networking. E-LETTER.

Burke, J., Gasti, P., Nathan, N., and Tsudik, G. 2013. Securing instrumented environments over content-centric networking: The case of lighting control and NDN. 2013 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 394–398. https://doi.org/10.1109/INFCOMW.2013.6970725.

Burke, J., Gasti, P., Nathan, N., and Tsudik, G. 2014. Secure sensing over named data networking. 2014 IEEE 13th international symposium on network computing and applications, ieeexplore.ieee.org, 175–180. https://doi.org/10.1109/NCA.2014.34.

Cabral, C.M.S., Rothenberg, C.E., and Magalhães, M.F. 2013a. Mini-CCNx: Fast prototyping for named data networking. Proceedings of the 3rd ACM SIGCOMM workshop on information-centric networking, ACM, 33–34. https://doi.org/10.1145/2491224.2491236.

Cabral, C.M.S., Rothenberg, C.E., and Magalhães, M.F. 2013b. Reproducing real NDN experiments using mini-CCNx. Proceedings of the 3rd ACM SIGCOMM workshop on information-centric networking, ACM, 45–46. https://doi.org/10.1145/2491224.2491242.

CAIDA. 2017. Tunnel ethernet traffic over NDN - named data networking (NDN). https://named-data.net/2017/09/05/tunnel-ethernet-traffic-ndn/.

Cao, J., Pei, D., Wu, Z., Zhang, X., Zhang, B., Wang, L., and Zhao, Y. 2016a. Improving the freshness of NDN forwarding states. 2016 IFIP networking conference (IFIP networking) and workshops, ieeexplore.ieee.org, 189–197. https://doi.org/10.1109/IFIPNetworking.2016.7497213.

Cao, J., Pei, D., Zhang, X., Zhang, B., and Zhao, Y. 2016b. Fetching popular data from the nearest replica in NDN. 2016 25th international conference on computer communication and networks (ICCCN), ieeexplore.ieee.org, 1–9. https://doi.org/10.1109/ICCCN.2016.7568523.

Carofiglio, G., Gallo, M., and Muscariello, L. 2012a. ICP: Design and evaluation of an interest control protocol for content-centric networking. 2012 proceedings IEEE INFOCOM workshops, ieeexplore.ieee.org, 304–309. https://doi.org/10.1109/INFCOMW.2012.6193510.

Carofiglio, G., Gallo, M., and Muscariello, L. 2012b. Joint hop-by-hop and receiver-driven interest control protocol for content-centric networks. SIGCOMM Comput. Commun. Rev. 42, 4, 491–496. https://doi.org/10.1145/2377677.2377772.

Carofiglio, G., Gallo, M., and Muscariello, L. 2016a. Optimal multipath congestion control and request forwarding in information-centric networks: Protocol design and experimentation. Computer Networks 110, 104–117. https://doi.org/10.1016/j.comnet.2016.09.012.

Carofiglio, G., Gallo, M., Muscariello, L., and Papali, M. 2013a. Multipath congestion control in content-centric networks. 2013 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 363–368. https://doi.org/10.1109/INFCOMW.2013.6970718.

Carofiglio, G., Gallo, M., Muscariello, L., and Perino, D. 2011a. Modeling data transfer in content-centric networking. Proceedings of the 23rd international teletraffic congress, International Teletraffic Congress, 111–118.

Carofiglio, G., Gallo, M., Muscariello, L., and Perino, D. 2015. Pending interest table sizing in named data networking. Proceedings of the 2Nd ACM conference on Information-Centric networking, ACM, 49–58. https://doi.org/10.1145/2810156.2810167.

Carofiglio, G., Gehlen, V., and Perino, D. 2011b. Experimental evaluation of memory management in Content-Centric networking. 2011 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/icc.2011.5962739.

Carofiglio, G., Mekinda, L., and Muscariello, L. 2016b. Joint forwarding and caching with latency awareness in information-centric networking. Computer Networks 110, 133–153. https://doi.org/10.1016/j.comnet.2016.09.019.

Carofiglio, G., Morabito, G., Muscariello, L., Solis, I., and Varvello, M. 2013b. From content delivery today to information centric networking. Computer Networks 57, 16, 3116–3127. https://doi.org/10.1016/j.comnet.2013.07.002.

Carzaniga, A., Khazaei, K., Papalini, M., and Wolf, A.L. 2013. Is information-centric multi-tree routing feasible? SIGCOMM Comput. Commun. Rev. 43, 4, 3–8. https://doi.org/10.1145/2534169.2491230.

Carzaniga, A., Papalini, M., and Wolf, A.L. 2011. Content-based Publish/Subscribe networking and information-centric networking. Proceedings of the ACM SIGCOMM workshop on information-centric networking, ACM, 56–61. https://doi.org/10.1145/2018584.2018599.

Casetti, C., Chiasserini, C.F., Pelle, L.C., Valle, C.D., Duan, Y., and Giaccone, P. 2015. Content-centric routing in Wi-Fi direct multi-group networks. 2015 IEEE 16th international symposium on a world of wireless, mobile and multimedia networks (WoWMoM), ieeexplore.ieee.org, 1–9. https://doi.org/10.1109/WoWMoM.2015.7158136.

Cc, S., Raychoudhury, V., Marfia, G., and Singla, A. 2016. A survey of routing and data dissemination in delay tolerant networks. Journal of Network and Computer Applications 67, 128–146. https://doi.org/10.1016/j.jnca.2016.01.002.

Cerf, V. and Kahn, R. 1974. A protocol for packet network intercommunication. IEEE Transactions on Communications 22, 5, 637–648. https://doi.org/10.1109/TCOM.1974.1092259.

Chaabane, A., De Cristofaro, E., Kaafar, M.A., and Uzun, E. 2013. Privacy in content-oriented networking: Threats and countermeasures. SIGCOMM Comput. Commun. Rev. 43, 3, 25–33. https://doi.org/10.1145/2500098.2500102.

Chai, W.K., He, D., Psaras, I., and Pavlou, G. 2012. Cache “less for more” in Information-Centric networks. NETWORKING 2012, Springer, Berlin, Heidelberg, 27–40. https://doi.org/10.1007/978-3-642-30045-5\_3.

Chai, W.K., He, D., Psaras, I., and Pavlou, G. 2013. Cache “less for more” in information-centric networks (extended version). Computer communications 36, 7, 758–770. https://doi.org/10.1016/j.comcom.2013.01.007.

Chanda, A. and Westphal, C. 2013. A content management layer for software-defined information centric networks. Proceedings of the 3rd ACM SIGCOMM workshop on information-centric networking, ACM, 47–48. https://doi.org/10.1145/2491224.2491243.

Chanda, A., Westphal, C., and Raychaudhuri, D. 2013. Content based traffic engineering in software defined information centric networks. 2013 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 357–362. https://doi.org/10.1109/INFCOMW.2013.6970717.

Chen, M. 2014. NDNC-BAN: Supporting rich media healthcare services via named data networking in cloud-assisted wireless body area networks. Information sciences 284, 142–156. https://doi.org/10.1016/j.ins.2014.06.023.

Chen, M., Ong Mau, D., Zhang, Y., Taleb, T., and Leung, V.C.M. 2014a. VENDNET: VEhicular named data NETwork. Vehicular Communications 1, 4, 208–213. https://doi.org/10.1016/j.vehcom.2014.09.002.

Chen, Q., Xie, R., Yu, F.R., Liu, J., Huang, T., and Liu, Y. 2016. Transport control strategies in named data networking: A survey. IEEE Communications Surveys Tutorials 18, 3, 2052–2083. https://doi.org/10.1109/COMST.2016.2528164.

Chen, T., Lei, K., and Xu, K. 2014b. An encryption and probability based access control model for named data networking. 2014 IEEE 33rd international performance computing and communications conference (IPCCC), ieeexplore.ieee.org, 1–8. https://doi.org/10.1109/PCCC.2014.7017100.

Chengming, L.I., Wenjing, L., and Okamura, K. 2013. A greedy ant colony forwarding algorithm for named data networking. Proceedings of the Asia-Pacific Advanced Network 34, 0, 17–26. https://doi.org/10.7125/APAN.34.3.

Cheriton, D.R. and Gritter, M. 2000. TRIAD: A scalable deployable NAT-based internet architecture..

Choi, H. g., Yoo, J., Chung, T., Choi, N., Kwon, T.T., and Choi, Y. 2014a. CoRC: Coordinated routing and caching for named data networking. 2014 ACM/IEEE symposium on architectures for networking and communications systems (ANCS), 161–172.

Choi, H.-G., Yoo, J., Chung, T., Choi, N., Kwon, T., and Choi, Y. 2014b. CoRC: Coordinated routing and caching for named data networking. Proceedings of the tenth ACM/IEEE symposium on architectures for networking and communications systems, ACM, 161–172. https://doi.org/10.1145/2658260.2658275.

Choi, J., Han, J., Cho, E., Kwon, T., and Choi, Y. 2011. A survey on content-oriented networking for efficient content delivery. IEEE Communications Magazine 49, 3, 121–127. https://doi.org/10.1109/MCOM.2011.5723809.

Choi, N., Guan, K., Kilper, D.C., and Atkinson, G. 2012. In-network caching effect on optimal energy consumption in content-centric networking. 2012 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 2889–2894. https://doi.org/10.1109/ICC.2012.6364320.

Choi, S., Kim, K., Kim, S., and Roh, B. h. 2013. Threat of DoS by interest flooding attack in content-centric networking. The international conference on information networking 2013 (ICOIN), ieeexplore.ieee.org, 315–319. https://doi.org/10.1109/ICOIN.2013.6496396.

Chuah, M.C. and Xiong, X. 2011. Secure content centric mobile network. 2011 IEEE global telecommunications conference - GLOBECOM 2011, ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/GLOCOM.2011.6134268.

Chuat, L., Perrig, A., and Hu, Y.C. 2017. Deadline-Aware multipath communication: An optimization problem. 2017 47th annual IEEE/IFIP international conference on dependable systems and networks (DSN), 487–498. https://doi.org/10.1109/DSN.2017.32.

Cisco. 2017. The zettabyte era: Trends and analysis. Available on the World Wide Web at https://www.cisco.com/c/en/us/solutions/collateral/service-provider/visual-networking-index-vni/vni-hyperconnectivity-wp.html.

Clarke, I., Miller, S.G., Hong, T.W., Sandberg, O., and Wiley, B. 2002. Protecting free expression online with Freenet. IEEE Internet Computing 6, 1, 40–49. https://doi.org/10.1109/4236.978368.

Compagno, A., Conti, M., Gasti, P., Mancini, L.V., and Tsudik, G. 2015. Violating consumer anonymity: Geo-Locating nodes in named data networking. Applied cryptography and network security, Springer, Cham, 243–262. https://doi.org/10.1007/978-3-319-28166-7\_12.

Compagno, A., Conti, M., Gasti, P., and Tsudik, G. 2013. Poseidon: Mitigating interest flooding DDoS attacks in named data networking. 38th annual IEEE conference on local computer networks, ieeexplore.ieee.org, 630–638. https://doi.org/10.1109/LCN.2013.6761300.

Compagno, A., Yz, P.G., and Tsudik, G. Poseidon: Mitigating interest flooding DDoS attacks in named data networking..

Confais, B., Lebre, A., and Parrein, B. 2016. Performance analysis of object store systems in a Fog/Edge computing infrastructures. 2016 IEEE international conference on cloud computing technology and science (CloudCom), 294–301. https://doi.org/10.1109/CloudCom.2016.0055.

Conti, M., Gasti, P., and Teoli, M. 2013. A lightweight mechanism for detection of cache pollution attacks in named data networking. Computer Networks 57, 16, 3178–3191. https://doi.org/10.1016/j.comnet.2013.07.034.

Corujo, D., Aguiar, R.L., Vidal, I., and Garcia-Reinoso, J. 2012. A named data networking flexible framework for management communications. IEEE Communications Magazine 50, 12, 36–43. https://doi.org/10.1109/MCOM.2012.6384449.

Crowley, P. 2013. Named data networking. China-America frontiers of engineering symposium, frontiers of engineering, cse.wustl.edu.

Cui, X., Hui, L.C.K., Yiu, S.M., and Tsang, Y.H. 2016a. Study of censorship in named data networking. In: Advanced multimedia and ubiquitous engineering. Springer, Berlin, Heidelberg, 145–152. https://doi.org/10.1007/978-3-662-47895-0\_18.

Cui, X., Tsang, Y.H., Hui, L.C.K., Yiu, S.M., and Luo, B. 2016b. Defend against internet censorship in named data networking. 2016 18th international conference on advanced communication technology (ICACT), 1–1. https://doi.org/10.1109/ICACT.2016.7423367.

Cui, Y., Lai, F., Yeh, E., and Liu, R. 2016c. Enhanced VIP algorithms for forwarding, caching, and congestion control in named data networks. 2016 IEEE global communications conference (GLOBECOM), 1–7. https://doi.org/10.1109/GLOCOM.2016.7841814.

Dabirmoghaddam, A., Barijough, M.M., and Garcia-Luna-Aceves, J.J. 2014. Understanding optimal caching and opportunistic caching at the edge of information-centric networks. Proceedings of the 1st ACM conference on information-centric networking, ACM; dl.acm.org, 47–56.

Dai, H. and Liu, B. 2016. CONSERT: Constructing optimal name-based routing tables. Computer Networks 94, 62–79. https://doi.org/10.1016/j.comnet.2015.11.020.

Dai, H., Liu, B., Chen, Y., and Wang, Y. 2012a. On pending interest table in named data networking. Proceedings of the eighth ACM/IEEE symposium on architectures for networking and communications systems, ACM, 211–222. https://doi.org/10.1145/2396556.2396600.

Dai, H., Liu, B., Chen, Y., and Wang, Y. 2012b. On pending interest table in named data networking. 2012 ACM/IEEE symposium on architectures for networking and communications systems (ANCS), 211–222.

Dai, H., Lu, J., Wang, Y., and Liu, B. 2012c. A two-layer intra-domain routing scheme for named data networking. 2012 IEEE global communications conference (GLOBECOM), ieeexplore.ieee.org, 2815–2820. https://doi.org/10.1109/GLOCOM.2012.6503543.

Dai, H., Lu, J., Wang, Y., and Liu, B. 2015. BFAST: Unified and scalable index for NDN forwarding architecture. 2015 IEEE conference on computer communications (INFOCOM), ieeexplore.ieee.org, 2290–2298. https://doi.org/10.1109/INFOCOM.2015.7218616.

Dai, H., Wang, Y., Fan, J., and Liu, B. 2013. Mitigate DDoS attacks in NDN by interest traceback. 2013 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 381–386. https://doi.org/10.1109/INFCOMW.2013.6970722.

Dai, H., Wang, Y., Wu, H., Lu, J., and Liu, B. 2014. Towards line-speed and accurate on-line popularity monitoring on NDN routers. 2014 IEEE 22nd international symposium of quality of service (IWQoS), ieeexplore.ieee.org, 178–187. https://doi.org/10.1109/IWQoS.2014.6914318.

Dannewitz, C. 2009. Netinf: An information-centric design for the future internet. Proc. 3rd GI/ITG KuVS workshop on the future internet, www-old.cs.uni-paderborn.de, 1–3.

Dannewitz, C., Kutscher, D., Ohlman, B., Farrell, S., Ahlgren, B., and Karl, H. 2013. Network of information (netinf)–an information-centric networking architecture. Computer communications 36, 7, 721–735.

Daras, P., Semertzidis, T., Makris, L., and Strintzis, M.G. 2010. Similarity content search in content centric networks. Proceedings of the 18th ACM international conference on multimedia, ACM, 775–778. https://doi.org/10.1145/1873951.1874075.

Datta, S.K. and Bonnet, C. 2016. Integrating named data networking in internet of things architecture. 2016 IEEE international conference on consumer Electronics-Taiwan (ICCE-TW), ieeexplore.ieee.org, 1–2. https://doi.org/10.1109/ICCE-TW.2016.7520967.

De Silva, U., Lertsinsrubtavee, A., Sathiaseelan, A., and Kanchanasut, K. 2016. Named data networking based smart home lighting. Proceedings of the 2016 ACM SIGCOMM conference, ACM, 573–574. https://doi.org/10.1145/2934872.2959055.

Deng, G., Shi, L., Li, R., and Xie, X. 2015a. Efficient Inter-Vehicle internet content distribution based on named data. 2015 IEEE 82nd vehicular technology conference (VTC2015-Fall), ieeexplore.ieee.org, 1–5. https://doi.org/10.1109/VTCFall.2015.7390913.

Deng, G., Xie, X., Shi, L., and Li, R. 2015b. Hybrid information forwarding in VANETs through named data networking. 2015 IEEE 26th annual international symposium on personal, indoor, and mobile radio communications (PIMRC), ieeexplore.ieee.org, 1940–1944. https://doi.org/10.1109/PIMRC.2015.7343616.

Detti, A., Blefari Melazzi, N., Salsano, S., and Pomposini, M. 2011. CONET: A content centric inter-networking architecture. Proceedings of the ACM SIGCOMM workshop on information-centric networking, ACM, 50–55. https://doi.org/10.1145/2018584.2018598.

Detti, A. and Blefari-Melazzi, N. 2011. Network layer solutions for a Content-Centric internet. In: Trustworthy internet. Springer, Milano, 359–369. https://doi.org/10.1007/978-88-470-1818-1\_27.

Detti, A., Perino, D., Gerla, M., and Choi, Y. 2013. Editorial: Special issue on information centric networking. Computer Networks 57, 16, 3113–3115. https://doi.org/10.1016/j.comnet.2013.09.012.

Detti, A., Pomposini, M., Blefari-Melazzi, N., Salsano, S., and Bragagnini, A. 2012. Offloading cellular networks with Information-Centric networking: The case of video streaming. 2012 IEEE international symposium on a world of wireless, mobile and multimedia networks (WoWMoM), ieeexplore.ieee.org, 1–3. https://doi.org/10.1109/WoWMoM.2012.6263734.

Detti, A., Ricci, B., and Blefari-Melazzi, N. 2015a. Mobile peer-to-peer video streaming over information-centric networks. Computer Networks 81, 272–288. https://doi.org/10.1016/j.comnet.2015.02.018.

Detti, A., Tassetto, D., Melazzi, N.B., and Fedi, F. 2015b. Exploiting content centric networking to develop topic-based, publish–subscribe MANET systems. Ad Hoc Networks 24, 115–133. https://doi.org/10.1016/j.adhoc.2014.07.020.

Devi, M.D., Geetha, K., and Saranyadevi, K. 2017. Content based routing using information centric network for IoT. Procedia computer science 115, 707–714. https://doi.org/10.1016/j.procs.2017.09.145.

Dhillon, V., Metcalf, D., and Hooper, M. 2017. Unpacking Ethereum. In: Blockchain enabled applications. Apress, Berkeley, CA, 25–45. https://doi.org/10.1007/978-1-4842-3081-7\_4.

DiBenedetto, S., Gasti, P., Tsudik, G., and Uzun, E. 2011a. ANDaNA: Anonymous named data networking application..

DiBenedetto, S., Papadopoulos, C., and Massey, D. 2011b. Routing policies in named data networking. Proceedings of the ACM SIGCOMM workshop on information-centric networking, ACM, 38–43. https://doi.org/10.1145/2018584.2018595.

Ding, K., Liu, Y., Cho, H.-H., Chao, H.-C., and Shih, T.K. 2016a. Cooperative detection and protection for interest flooding attacks in named data networking. International Journal of Communication Systems 29, 13, 1968–1980. https://doi.org/10.1002/dac.2883.

Ding, S., Chen, Z., and Liu, Z. 2012. Parallelizing FIB lookup in content centric networking. 2012 third international conference on networking and distributed computing, ieeexplore.ieee.org, 6–10. https://doi.org/10.1109/ICNDC.2012.10.

Ding, W., Yan, Z., and Deng, R.H. 2016b. A survey on future internet security architectures. IEEE Access 4, 4374–4393. https://doi.org/10.1109/ACCESS.2016.2596705.

Dogruluk, E., Costa, A., and Macedo, J. 2016. Evaluating privacy attacks in named data network. 2016 IEEE symposium on computers and communication (ISCC), 1251–1256. https://doi.org/10.1109/ISCC.2016.7543908.

Drake, K. 2015. HTTP is obsolete. It’s time for the distributed, permanent web. https://ipfs.io/ipfs/QmNhFJjGcMPqpuYfxL62VVB9528NXqDNMFXiqN5bgFYiZ1/its-time-for-the-permanent-web.html.

Drira, W. and Filali, F. 2014a. NDN-Q: An NDN query mechanism for efficient V2X data collection. 2014 eleventh annual IEEE international conference on sensing, communication, and networking workshops (SECON workshops), ieeexplore.ieee.org, 13–18. https://doi.org/10.1109/SECONW.2014.6979698.

Drira, W. and Filali, F. 2014b. A Pub/Sub extension to NDN for efficient data collection and dissemination in V2X networks. Proceeding of IEEE international symposium on a world of wireless, mobile and multimedia networks 2014, ieeexplore.ieee.org, 1–7. https://doi.org/10.1109/WoWMoM.2014.6918991.

Dron, W., Leung, A., Uddin, M., Wang, S., Abdelzaher, T., Govindan, R., and Hancock, J. 2013. Information-maximizing caching in ad hoc networks with named data networking. 2013 IEEE 2nd network science workshop (NSW), ieeexplore.ieee.org, 90–93. https://doi.org/10.1109/NSW.2013.6609199.

Dynerowicz, S., Aponte, O., and Mendes, P. 2017. NDN operation in opportunistic wireless networks. NDNComm2017, Memphis, USA.

D’Ambrosio, M., Dannewitz, C., Karl, H., and Vercellone, V. 2011. MDHT: A hierarchical name resolution service for information-centric networks. Proceedings of the ACM SIGCOMM workshop on information-centric networking, ACM, 7–12. https://doi.org/10.1145/2018584.2018587.

Edens, G. and Scott, G. 2017. The packet protector. IEEE Spectrum 54, 4, 42–48. https://doi.org/10.1109/MSPEC.2017.7880457.

Etefia, B., Gerla, M., and Zhang, L. 2012. Supporting military communications with named data networking: An emulation analysis. MILCOM 2012 - 2012 IEEE military communications conference, ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/MILCOM.2012.6415685.

Etefia, B. and Zhang, L. 2012. Named data networking for military communication systems. 2012 IEEE aerospace conference, ieeexplore.ieee.org, 1–7. https://doi.org/10.1109/AERO.2012.6187109.

Eum, S., Shoji, Y., Murata, M., and Nishinaga, N. 2015. Design and implementation of ICN-enabled IEEE 802.11 access points as nano data centers. Journal of Network and Computer Applications 50, Supplement C, 159–167. https://doi.org/10.1016/j.jnca.2014.07.031.

Eymann, J. and Timm-Giel, A. 2013. Multipath transmission in content centric networking using a probabilistic Ant-Routing mechanism. Mobile networks and management, Springer, Cham, 45–56. https://doi.org/10.1007/978-3-319-04277-0\_4.

Fall, K. 2003. A delay-tolerant network architecture for challenged internets. Proceedings of the 2003 conference on applications, technologies, architectures, and protocols for computer communications, ACM, 27–34. https://doi.org/10.1145/863955.863960.

Fan, C.I., Chen, I.T., Cheng, C.K., Huang, J.J., and Chen, W.T. 2017. FTP-NDN: File transfer protocol based on Re-Encryption for named data network supporting nondesignated receivers. IEEE Systems Journal PP, 99, 1–12. https://doi.org/10.1109/JSYST.2016.2580299.

Fan, C., Shannigrahi, S., DiBenedetto, S., Olschanowsky, C., Papadopoulos, C., and Newman, H. 2015. Managing scientific data with named data networking. Proceedings of the fifth international workshop on Network-Aware data management, ACM, 1:1–1:7. https://doi.org/10.1145/2832099.2832100.

Faran Majeed, M., Hassan Ahmed, S., Muhammad, S., Song, H., and Rawat, D.B. 2017. Multimedia streaming in information-centric networking: A survey and future perspectives. Computer Networks 125, 103–121. https://doi.org/10.1016/j.comnet.2017.05.030.

Feng, T. and Liu, N. 2017. A sensitive information protection scheme in named data networking using Attribute-Based Ring-Signcryption. 2017 IEEE second international conference on data science in cyberspace (DSC), 187–194. https://doi.org/10.1109/DSC.2017.67.

Fesehaye, D. and Wei, J. 2014. SNC: Scalable NDN-based conferencing architecture. 2014 IEEE 11th consumer communications and networking conference (CCNC), ieeexplore.ieee.org, 872–880. https://doi.org/10.1109/CCNC.2014.6940498.

Fricker, C., Robert, P., Roberts, J., and Sbihi, N. 2012. Impact of traffic mix on caching performance in a content-centric network. 2012 proceedings IEEE INFOCOM workshops, ieeexplore.ieee.org, 310–315. https://doi.org/10.1109/INFCOMW.2012.6193511.

Gao, M., Zhu, X., and Su, Y. 2015. Protecting router cache privacy in named data networking. 2015 IEEE/CIC international conference on communications in china (ICCC), 1–5. https://doi.org/10.1109/ICCChina.2015.7448754.

Gao, S., Zhang, H., and Zhang, B. 2016. Energy efficient interest forwarding in NDN-Based wireless sensor networks. Mobile Information Systems 2016. https://doi.org/10.1155/2016/3127029.

Gao, Z., Venkataramani, A., Kurose, J.F., and Heimlicher, S. 2014. Towards a quantitative comparison of location-independent network architectures. Proceedings of the 2014 ACM conference on SIGCOMM, ACM, 259–270. https://doi.org/10.1145/2619239.2626333.

Garcia-Luna-Aceves, J.J. 2014. Name-based content routing in information centric networks using distance information. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 7–16. https://doi.org/10.1145/2660129.2660141.

Garcia-Luna-Aceves, J.J. 2015. New directions in content centric networking. 2015 IEEE 12th international conference on mobile ad hoc and sensor systems, ieeexplore.ieee.org, 494–499. https://doi.org/10.1109/MASS.2015.86.

Garcia-Luna-Aceves, J.J. and Barijough, M.M. 2016. Content-centric networking using anonymous datagrams. 2016 IFIP networking conference (IFIP networking) and workshops, ieeexplore.ieee.org, 171–179. https://doi.org/10.1109/IFIPNetworking.2016.7497197.

Garcia-Luna-Aceves, J.J., Mirzazad-Barijough, M., and Hemmati, E. 2016. Content-Centric networking at internet scale through the integration of name resolution and routing. Proceedings of the 3rd ACM conference on Information-Centric networking, ACM, 83–92. https://doi.org/10.1145/2984356.2984359.

Garcia-Reinoso, J., Fernández, N., Vidal, I., and Arias Fisteus, J. 2015. Scalable data replication in content-centric networking based on alias names. Journal of Network and Computer Applications 47, 85–98. https://doi.org/10.1016/j.jnca.2014.10.003.

Ge, J., Wang, S., Wu, Y., Tang, H., and Yuepeng, E. 2016. Performance improvement for source mobility in named data networking based on global–local FIB updates. Peer-to-Peer Networking and Applications 9, 4, 670–680. https://doi.org/10.1007/s12083-015-0353-z.

Geels, D.M. 2002. Data replication in OceanStore. University of California at Berkeley, Berkeley, CA, USA.

Ghali, C., Narayanan, A., Oran, D., Tsudik, G., and Wood, C.A. 2015a. Secure fragmentation for Content-Centric networks. 2015 IEEE 14th international symposium on network computing and applications, ieeexplore.ieee.org, 47–56. https://doi.org/10.1109/NCA.2015.34.

Ghali, C., Schlosberg, M.A., Tsudik, G., and Wood, C.A. 2015b. Interest-Based access control for content centric networks. Proceedings of the 2Nd ACM conference on Information-Centric networking, ACM, 147–156. https://doi.org/10.1145/2810156.2810174.

Ghali, C., Tsudik, G., and Uzun, E. 2014a. Needle in a haystack: Mitigating content poisoning in named-data networking. Proceedings of NDSS workshop on security of emerging networking technologies (SENT), sprout.ics.uci.edu.

Ghali, C., Tsudik, G., and Uzun, E. 2014b. Network-Layer trust in Named-Data networking. SIGCOMM Comput. Commun. Rev. 44, 5, 12–19. https://doi.org/10.1145/2677046.2677049.

Ghodsi, A., Shenker, S., Koponen, T., Singla, A., Raghavan, B., and Wilcox, J. 2011. Information-centric networking: Seeing the forest for the trees. Proceedings of the 10th ACM workshop on hot topics in networks, ACM, 1:1–1:6. https://doi.org/10.1145/2070562.2070563.

Goergen, D., Cholez, T., François, J., and Engel, T. 2013. Security monitoring for Content-Centric networking. In: Data privacy management and autonomous spontaneous security. Springer, Berlin, Heidelberg, 274–286. https://doi.org/10.1007/978-3-642-35890-6\_20.

Gong, L., Wang, J., Zhang, X., and Lei, K. 2016. Intelligent forwarding strategy based on online machine learning in named data networking. 2016 IEEE Trustcom/BigDataSE/ISPA, 1288–1294. https://doi.org/10.1109/TrustCom.2016.0206.

Gouge, J., Seetharam, A., and Roy, S. 2016. On the scalability and effectiveness of a cache pollution based DoS attack in information centric networks. 2016 international conference on computing, networking and communications (ICNC), ieeexplore.ieee.org, 1–5. https://doi.org/10.1109/ICCNC.2016.7440666.

Grandl, R., Su, K., and Westphal, C. 2013. On the interaction of adaptive video streaming with Content-Centric networking. 2013 20th international packet video workshop, ieeexplore.ieee.org, 1–8. https://doi.org/10.1109/PV.2013.6691451.

Grassi, G., Pesavento, D., Pau, G., Vuyyuru, R., Wakikawa, R., and Zhang, L. 2014. VANET via named data networking. 2014 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 410–415. https://doi.org/10.1109/INFCOMW.2014.6849267.

Grassi, G., Pesavento, D., Pau, G., Zhang, L., and Fdida, S. 2015. Navigo: Interest forwarding by geolocations in vehicular named data networking. 2015 IEEE 16th international symposium on a world of wireless, mobile and multimedia networks (WoWMoM), ieeexplore.ieee.org, 1–10. https://doi.org/10.1109/WoWMoM.2015.7158165.

Grassi, G., Pesavento, D., Wang, L., Pau, G., Vuyyuru, R., Wakikawa, R., and Zhang, L. 2013. ACM HotMobile 2013 poster: Vehicular inter-networking via named data. SIGMOBILE Mob. Comput. Commun. Rev. 17, 3, 23–24. https://doi.org/10.1145/2542095.2542108.

Gritter, M. 2000. The TRIAD content layer: An internet architecture for content routing support in the internet. Stanford networking seminar; Stanford networking seminar.

Gritter, M. and Cheriton, D.R. 2001. An architecture for content routing support in the internet. USITS, static.usenix.org, 4–4.

Guimarães, P.H.V., Ferraz, L.H.G., Torres, J.V., Mattos, D.M.F., F., M.P.A., L., M.E.A., Alvarenga, I.D., Rodrigues, C.S.C., and Duarte, O.C.M.B. 2013. Experimenting Content-Centric networks in the future internet testbed environment. 2013 IEEE international conference on communications workshops (ICC), ieeexplore.ieee.org, 1383–1387. https://doi.org/10.1109/ICCW.2013.6649453.

Guo, S., Xie, H., and Shi, G. 2012. Collaborative forwarding and caching in content centric networks. NETWORKING 2012, Springer, Berlin, Heidelberg, 41–55. https://doi.org/10.1007/978-3-642-30045-5\_4.

Gusev, P. and Burke, J. 2015. NDN-RTC: Real-Time videoconferencing over named data networking. Proceedings of the 2Nd ACM conference on Information-Centric networking, ACM, 117–126. https://doi.org/10.1145/2810156.2810176.

Hahm, O., Baccelli, E., Schmidt, T., Wählisch, M., Adjih, C., and Massoulié, L. 2017. Low-power internet of things with NDN & cooperative caching. ACM ICN 2017-4th ACM conference on Information-Centric networking, hal.inria.fr.

Hail, M.A., Amadeo, M., Molinaro, A., and Fischer, S. 2015. Caching in named data networking for the wireless internet of things. 2015 international conference on recent advances in internet of things (RIoT), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/RIOT.2015.7104902.

Hajimirsadeghi, M., Mandayam, N.B., and Reznik, A. 2017. Joint caching and pricing strategies for popular content in information centric networks. IEEE Journal on Selected Areas in Communications 35, 3, 654–667. https://doi.org/10.1109/JSAC.2017.2672161.

Hamdane, B., Boussada, R., Elhdhili, M.E., and Fatmi, S.G.E. 2017a. Hierarchical identity based cryptography for security and trust in named data networking. 2017 IEEE 26th international conference on enabling technologies: Infrastructure for collaborative enterprises (WETICE), 226–231. https://doi.org/10.1109/WETICE.2017.33.

Hamdane, B., Boussada, R., Elhdhili, M.E., and Fatmi, S.G.E. 2017b. Towards a secure access to content in named data networking. 2017 IEEE 26th international conference on enabling technologies: Infrastructure for collaborative enterprises (WETICE), 250–255. https://doi.org/10.1109/WETICE.2017.32.

Hamdane, B., Msahli, M., Serhrouchni, A., and Fatmi, S.G.E. 2013a. Data-based access control in named data networking. 9th IEEE international conference on collaborative computing: Networking, applications and worksharing, ieeexplore.ieee.org, 531–536. https://doi.org/10.4108/icst.collaboratecom.2013.254180.

Hamdane, B., Serhrouchni, A., Fadlallah, A., and Fatmi, S.G.E. 2012. Named-Data security scheme for named data networking. 2012 third international conference on the network of the future (NOF), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/NOF.2012.6464002.

Hamdane, B., Serhrouchni, A., and Fatmi, S.G.E. 2013b. Access control enforcement in named data networking. 8th international conference for internet technology and secured transactions (ICITST-2013), ieeexplore.ieee.org, 576–581. https://doi.org/10.1109/ICITST.2013.6750268.

Han, B., Wang, X., Choi, N., Kwon, T., and Choi, Y. 2013. AMVS-NDN: Adaptive mobile video streaming and sharing in wireless named data networking. 2013 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 375–380. https://doi.org/10.1109/INFCOMW.2013.6970721.

Han, D., Anand, A., Dogar, F., Li, B., Lim, H., Machado, M., Mukundan, A., Wu, W., Akella, A., Andersen, D.G., Byers, J.W., Seshan, S., and Steenkiste, P. 2012. XIA: Efficient support for evolvable internetworking. Proceedings of the 9th USENIX conference on networked systems design and implementation, USENIX Association, 23–23.

Han, S. and Woo, H. 2016. NDN-Based Pub/Sub system for scalable IoT cloud. 2016 IEEE international conference on cloud computing technology and science (CloudCom), ieeexplore.ieee.org, 488–491. https://doi.org/10.1109/CloudCom.2016.0085.

Haque, M.U., Pawlikowski, K., Willig, A., and Bischofs, L. 2012. Performance analysis of blind routing algorithms over content centric networking architecture. 2012 international conference on computer and communication engineering (ICCCE), ieeexplore.ieee.org, 922–927. https://doi.org/10.1109/ICCCE.2012.6271351.

Haw, R. and Hong, C.S. 2012. A seamless content delivery scheme for flow mobility in content centric network. 2012 14th Asia-Pacific network operations and management symposium (APNOMS), ieeexplore.ieee.org, 1–5. https://doi.org/10.1109/APNOMS.2012.6356059.

He, D., Chai, W.K., and Pavlou, G. 2011. Leveraging in-network caching for efficient content delivery in content-centric network. Proceedings of the london communication symposium, london, UK, ee.ucl.ac.uk.

Helgason, Ó.R., Yavuz, E.A., Kouyoumdjieva, S.T., Pajevic, L., and Karlsson, G. 2010. A mobile peer-to-peer system for opportunistic content-centric networking. Proceedings of the second ACM SIGCOMM workshop on networking, systems, and applications on mobile handhelds, ACM, 21–26. https://doi.org/10.1145/1851322.1851330.

Hemanathan, V. and Anusha, N. 2015. Role based content access control in NDN. Journal of Innovative Technology and Education 2, 1, 65–73.

Hermans, F., Ngai, E., and Gunningberg, P. 2011. Mobile sources in an information-centric network with hierarchical names: An indirection approach. 7th SNCNW.

Hermans, F., Ngai, E., and Gunningberg, P. 2012. Global source mobility in the content-centric networking architecture. Proceedings of the 1st ACM workshop on emerging Name-Oriented mobile networking design - architecture, algorithms, and applications, ACM, 13–18. https://doi.org/10.1145/2248361.2248366.

Hoque, A.K.M.M., Amin, S.O., Alyyan, A., Zhang, B., Zhang, L., and Wang, L. 2013. NLSR: Named-data link state routing protocol. Proceedings of the 3rd ACM SIGCOMM workshop on information-centric networking, ACM, 15–20. https://doi.org/10.1145/2491224.2491231.

Hou, R., Chang, Y., and Yang, L. 2017. Multi-constrained QoS routing based on PSO for named data networking. IET Communications 11, 8, 1251–1255. https://doi.org/10.1049/iet-com.2016.0783.

Hoßfeld, T., Chan, S.-H.G., Mark, B.L., and Timm-Giel, A. 2017. Softwarization and caching in NGN. Computer Networks 125, 1–3. https://doi.org/10.1016/j.comnet.2017.06.023.

Hwang, I., Kim, D., and Ko, Y.-B.B. 2016a. Analysis of NDN repository architectures. High performance computing & simulation (HPCS), 2016 international conference on, 985–988.

Hwang, I., Kim, D., and Ko, Y.B. 2016b. Analysis of NDN repository architectures. 2016 international conference on high performance computing simulation (HPCS), ieeexplore.ieee.org, 985–988. https://doi.org/10.1109/HPCSim.2016.7568442.

Imai, S., Leibnitz, K., and Murata, M. 2013. Energy-Aware cache management for Content-Centric networking. 2013 27th international conference on advanced information networking and applications workshops, ieeexplore.ieee.org, 1623–1629. https://doi.org/10.1109/WAINA.2013.70.

Imbrenda, C., Muscariello, L., and Rossi, D. 2014. Analyzing cacheable traffic in isp access networks for micro cdn applications via content-centric networking. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 57–66. https://doi.org/10.1145/2660129.2660146.

Inayat, Z., Gani, A., Anuar, N.B., Khan, M.K., and Anwar, S. 2016. Intrusion response systems: Foundations, design, and challenges. Journal of Network and Computer Applications 62, 53–74. https://doi.org/10.1016/j.jnca.2015.12.006.

Intanagonwiwat, C., Govindan, R., and Estrin, D. 2000. Directed diffusion: A scalable and robust communication paradigm for sensor networks. Proceedings of the 6th annual international conference on mobile computing and networking, ACM, 56–67. https://doi.org/10.1145/345910.345920.

Intanagonwiwat, C., Govindan, R., Estrin, D., Heidemann, J., and Silva, F. 2003. Directed diffusion for wireless sensor networking. IEEE/ACM Transactions on Networking 11, 1, 2–16. https://doi.org/10.1109/TNET.2002.808417.

Ioannou, A. and Weber, S. 2016. A survey of caching policies and forwarding mechanisms in Information-Centric networking. IEEE Communications Surveys Tutorials 18, 4, 2847–2886. https://doi.org/10.1109/COMST.2016.2565541.

Ion, M., Zhang, J., and Schooler, E.M. 2013. Toward content-centric privacy in ICN: Attribute-based encryption and routing. Proceedings of the 3rd ACM SIGCOMM workshop on information-centric networking, ACM, 39–40. https://doi.org/10.1145/2491224.2491237.

Iorga, M., Feldman, L., Barton, R., Martin, M.J., Goren, N., and Mahmoudi, C. 2017. The NIST definition of fog computing. NIST.

Ito, D., Mohri, M., Shiraishi, Y., and Morii, M. 2017. Virtual storage and area limited data delivery over named data networking. 2017 14th IEEE annual consumer communications networking conference (CCNC), 95–102. https://doi.org/10.1109/CCNC.2017.7983088.

Jacobson, V., Mosko, M., Smetters, D., and Garcia-Luna-Aceves, J. 2007. Content-centric networking. Whitepaper, Palo Alto Research Center, 2–4.

Jacobson, V., Smetters, D.K., Briggs, N.H., Plass, M.F., Stewart, P., Thornton, J.D., and Braynard, R.L. 2009a. VoCCN: Voice-over content-centric networks. Proceedings of the 2009 workshop on re-architecting the internet, ACM, 1–6. https://doi.org/10.1145/1658978.1658980.

Jacobson, V., Smetters, D.K., Thornton, J.D., Plass, M., Briggs, N., and Braynard, R. 2012. Networking named content. Communications of the ACM 55, 1, 117–124. https://doi.org/10.1145/2063176.2063204.

Jacobson, V., Smetters, D.K., Thornton, J.D., Plass, M.F., Briggs, N.H., and Braynard, R.L. 2009b. Networking named content. Proceedings of the 5th international conference on emerging networking experiments and technologies (CoNEXT’09), 1–12.

Jensen, M., Gruschka, N., and Luttenberger, N. 2008. The impact of flooding attacks on network-based services. 2008 third international conference on availability, reliability and security, ieeexplore.ieee.org, 509–513. https://doi.org/10.1109/ARES.2008.16.

Jiang, X. and Bi, J. 2013. Interest set mechanism to improve the transport of named data networking. SIGCOMM Comput. Commun. Rev. 43, 4, 515–516. https://doi.org/10.1145/2534169.2491723.

Jiang, X. and Bi, J. 2014. nCDN: CDN enhanced with NDN. 2014 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 440–445. https://doi.org/10.1109/INFCOMW.2014.6849272.

Jiang, X. and Bi, J. 2016. IS: Interest set to enhance flow transmission in named-data networking. China Communications 13, Supplement 1, 65–71. https://doi.org/10.1109/CC.0.7560896.

Jiang, X., Bi, J., and Wang, Y. 2014. What benefits does NDN have in supporting mobility. 2014 IEEE symposium on computers and communications (ISCC), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/ISCC.2014.6912464.

Jiang, X., Bi, J., Wang, Y., Li, P., and Li, Z. 2012a. An easy matrix computation based simulator of NDN. 2012 third international conference on networking and distributed computing, ieeexplore.ieee.org, 36–39. https://doi.org/10.1109/ICNDC.2012.17.

Jiang, X., Bi, J., Wang, Y., Lin, P., and Li, Z. 2012b. A content provider mobility solution of named data networking. 2012 20th IEEE international conference on network protocols (ICNP), ieeexplore.ieee.org, 1–2. https://doi.org/10.1109/ICNP.2012.6459937.

Jin, T., Zhang, X., Liu, Y., and Lei, K. 2017. BlockNDN: A bitcoin blockchain decentralized system over named data networking. 2017 ninth international conference on ubiquitous and future networks (ICUFN), 75–80. https://doi.org/10.1109/ICUFN.2017.7993751.

Jung, E. 2015. A persistent web data architecture with named data networking. In: Advances in computer science and ubiquitous computing. Springer, Singapore, 153–158. https://doi.org/10.1007/978-981-10-0281-6\_22.

Jung, E. 2016. A design of alias naming scheme for namespace in named data networking. 2016 18th international conference on advanced communication technology (ICACT), 1–1. https://doi.org/10.1109/ICACT.2016.7423461.

Kalghoum, A., Gammar, S.M., and Saidane, L.A. 2017. Towards a novel cache replacement strategy for named data networking based on software defined networking. Computers & Electrical Engineering. https://doi.org/10.1016/j.compeleceng.2017.12.025.

Kamiyama, N. 2014. CCN economics: Can ISPs profit by introducing CCN? 10th international conference on network and service management (CNSM) and workshop, 242–247. https://doi.org/10.1109/CNSM.2014.7014166.

Kang, S.-J., Lee, S.-W., and Ko, Y.-B. 2012. A recent popularity based dynamic cache management for content centric networking. 2012 fourth international conference on ubiquitous and future networks (ICUFN), ieeexplore.ieee.org, 219–224. https://doi.org/10.1109/ICUFN.2012.6261697.

Karami, A. 2015. ACCPndn: Adaptive congestion control protocol in named data networking by learning capacities using optimized Time-Lagged feedforward neural network. Journal of Network and Computer Applications 56, 1–18. https://doi.org/10.1016/j.jnca.2015.05.017.

Karami, A. and Guerrero-Zapata, M. 2015a. A fuzzy anomaly detection system based on hybrid PSO-Kmeans algorithm in content-centric networks. Neurocomputing 149, 1253–1269. https://doi.org/10.1016/j.neucom.2014.08.070.

Karami, A. and Guerrero-Zapata, M. 2015b. A hybrid multiobjective RBF-PSO method for mitigating DoS attacks in named data networking. Neurocomputing 151, 1262–1282. https://doi.org/10.1016/j.neucom.2014.11.003.

Karami, A. and Guerrero-Zapata, M. 2015c. An ANFIS-based cache replacement method for mitigating cache pollution attacks in named data networking. Computer Networks 80, 51–65. https://doi.org/10.1016/j.comnet.2015.01.020.

Kato, T. and Bandai, M. 2017. Congestion control avoiding excessive rate reduction in named data network. 2017 14th IEEE annual consumer communications networking conference (CCNC), 108–113. https://doi.org/10.1109/CCNC.2017.7983090.

Katsaros, K.V., Chai, W.K., Wang, N., Pavlou, G., Bontius, H., and Paolone, M. 2014. Information-centric networking for machine-to-machine data delivery: A case study in smart grid applications. IEEE network 28, 3, 58–64. https://doi.org/10.1109/MNET.2014.6843233.

Katsaros, K., Xylomenos, G., and Polyzos, G.C. 2011. MultiCache: An overlay architecture for information-centric networking. Computer Networks 55, 4, 936–947. https://doi.org/10.1016/j.comnet.2010.12.012.

Katz, R.H., Culler, D.E., Sanders, S., Alspaugh, S., Chen, Y., Dawson-Haggerty, S., Dutta, P., He, M., Jiang, X., Keys, L., Krioukov, A., Lutz, K., Ortiz, J., Mohan, P., Reutzel, E., Taneja, J., Hsu, J., and Shankar, S. 2011. An information-centric energy infrastructure: The berkeley view. Sustainable Computing: Informatics and Systems 1, 1, 7–22. https://doi.org/10.1016/j.suscom.2010.10.001.

Kärkkäinen, M., Ala-Risku, T., and Främling, K. 2003. The product centric approach: A solution to supply network information management problems? Computers in Industry 52, 2, 147–159. https://doi.org/10.1016/S0166-3615(03)00086-1.

Kerrouche, A., Senouci, M.R., Mellouk, A., and Abreu, T. 2017. AC-QoS-FS: Ant colony based QoS-aware forwarding strategy for routing in named data networking. 2017 IEEE international conference on communications (ICC), 1–6. https://doi.org/10.1109/ICC.2017.7996960.

Khan, A.Z., Baqai, S., and Dogar, F.R. 2012. QoS aware path selection in content centric networks. 2012 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 2645–2649. https://doi.org/10.1109/ICC.2012.6363829.

Kietzmann, P., Gündoğan, C., Schmidt, T.C., Hahm, O., and Wählisch, M. 2017. The need for a name to MAC address mapping in NDN: Towards quantifying the resource gain. Proceedings of the 4th ACM conference on Information-Centric networking, ACM, 36–42. https://doi.org/10.1145/3125719.3125737.

Kim, D.-H., Kim, J.-H., Kim, Y.-S., Yoon, H.-S., and Yeom, I. 2012. Mobility support in content centric networks. Proceedings of the second edition of the ICN workshop on information-centric networking, ACM, 13–18. https://doi.org/10.1145/2342488.2342492.

Kim, D.-H., Kim, J.-H., Kim, Y.-S., Yoon, H.-S., and Yeom, I. 2015a. End-to-end mobility support in content centric networks. International Journal of Communication Systems 28, 6, 1151–1167.

Kim, D., Hwang, I., Srivastava, V., Ko, Y.B., and Lim, H. 2015b. Implementation of a front-end and back-end NDN system for climate modeling application. 2015 international conference on information and communication technology convergence (ICTC), ieeexplore.ieee.org, 554–559. https://doi.org/10.1109/ICTC.2015.7354608.

Kim, D. and Kim, Y. 2017. Enhancing NDN feasibility via dedicated routing and caching. Computer Networks 126, 218–228. https://doi.org/10.1016/j.comnet.2017.07.011.

Kim, D., Lee, S.-W., Ko, Y.-B., and Kim, J.-H. 2015c. Cache capacity-aware content centric networking under flash crowds. Journal of Network and Computer Applications 50, Supplement C, 101–113. https://doi.org/10.1016/j.jnca.2014.06.008.

Kim, D., Nam, S., Bi, J., and Yeom, I. 2015d. Efficient content verification in named data networking. Proceedings of the 2Nd ACM conference on Information-Centric networking, ACM, 109–116. https://doi.org/10.1145/2810156.2810165.

Kim, J., Jang, M. w., Lee, B.J., and Kim, K. 2011. Content centric network-based virtual private community. 2011 IEEE international conference on consumer electronics (ICCE), ieeexplore.ieee.org, 843–844. https://doi.org/10.1109/ICCE.2011.5722896.

Kim, K., Choi, S., Kim, S., and Roh, B.-H. 2013. A push-enabling scheme for live streaming system in content-centric networking. Proceedings of the 2013 workshop on student workhop, ACM, 49–52. https://doi.org/10.1145/2537148.2537162.

Kim, S., Urata, Y., Koizumi, Y., and Hasegawa, T. 2015e. Power-saving NDN-based message delivery based on collaborative communication in disasters. The 21st IEEE international workshop on local and metropolitan area networks, ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/LANMAN.2015.7114733.

Kim, Y.J., Thottan, M., Kolesnikov, V., and Lee, W. 2010. A secure decentralized data-centric information infrastructure for smart grid. IEEE Communications Magazine 48, 11, 58–65. https://doi.org/10.1109/MCOM.2010.5621968.

Kim, Y., Kim, Y., Bi, J., and Yeom, I. 2016. Differentiated forwarding and caching in named-data networking. Journal of Network and Computer Applications 60, 155–169. https://doi.org/10.1016/j.jnca.2015.09.011.

Kim, Y. and Yeom, I. 2013. Performance analysis of in-network caching for content-centric networking. Computer Networks 57, 13, 2465–2482. https://doi.org/10.1016/j.comnet.2012.11.026.

Kim, Y., Yeom, I., Bi, J., and Kim, Y. 2015f. Scalable and efficient file sharing in information-centric networking. Journal of Network and Computer Applications 57, 21–32. https://doi.org/10.1016/j.jnca.2015.07.010.

Ko, B.J., Pappas, V., Raghavendra, R., Song, Y., Dilmaghani, R.B., Lee, K.-W., and Verma, D. 2012. An information-centric architecture for data center networks. Proceedings of the second edition of the ICN workshop on information-centric networking, ACM, 79–84. https://doi.org/10.1145/2342488.2342506.

Ko, H., Kim, Y., Suh, D., and Pack, S. 2014. A proactive content pushing scheme for provider mobility support in information centric networks. 2014 IEEE 11th consumer communications and networking conference (CCNC), ieeexplore.ieee.org, 523–524. https://doi.org/10.1109/CCNC.2014.6994423.

Koponen, T., Chawla, M., Chun, B.-G., Ermolinskiy, A., Kim, K.H., Shenker, S., and Stoica, I. 2007. A data-oriented (and beyond) network architecture. Proceedings of the 2007 conference on applications, technologies, architectures, and protocols for computer communications, ACM, 181–192. https://doi.org/10.1145/1282380.1282402.

Kubiatowicz, J., Bindel, D., Chen, Y., Czerwinski, S., Eaton, P., Geels, D., Gummadi, R., Rhea, S., Weatherspoon, H., Wells, C., and Zhao, B. 2000. OceanStore: An architecture for global-scale persistent storage. SIGARCH Comput. Archit. News 28, 5, 190–201. https://doi.org/10.1145/378995.379239.

Kumar, S., Shi, L., Ahmed, N., Gil, S., Katabi, D., and Rus, D. 2012. CarSpeak: A content-centric network for autonomous driving. Proceedings of the ACM SIGCOMM 2012 conference on applications, technologies, architectures, and protocols for computer communication, ACM, 259–270. https://doi.org/10.1145/2342356.2342403.

Kuriharay, J., Uzun, E., and Wood, C.A. 2015a. An encryption-based access control framework for content-centric networking. 2015 IFIP networking conference (IFIP networking), ieeexplore.ieee.org, 1–9. https://doi.org/10.1109/IFIPNetworking.2015.7145300.

Kuriharay, J., Uzun, E., and Wood, C.A. 2015b. An encryption-based access control framework for content-centric networking. 2015 IFIP networking conference (IFIP networking), 1–9. https://doi.org/10.1109/IFIPNetworking.2015.7145300.

Kurose, J. 2012. Content-centric networking: Technical perspective. Communications of the ACM 55, 1, 116–116. https://doi.org/10.1145/2063176.2063203.

Kurose, J. 2014. Information-centric networking: The evolution from circuits to packets to content. Computer Networks 66, 112–120. https://doi.org/10.1016/j.comnet.2014.04.002.

Lailari, Z., Abraham, H.B., Aronberg, B., Hudepohl, J., Yuan, H., DeHart, J., Parwatikar, J., and Crowley, P. 2015. Experiments with the emulated NDN testbed in ONL. Proceedings of the 2Nd ACM conference on Information-Centric networking, ACM, 219–220. https://doi.org/10.1145/2810156.2812616.

Lal, K.N. and Kumar, A. 2016. A cache content replacement scheme for information centric network. Procedia computer science 89, 73–81. https://doi.org/10.1016/j.procs.2016.06.011.

Lauinger, T. 2010. Security & scalability of Content-Centric networking. http://tuprints.ulb.tu-darmstadt.de/id/eprint/2275.

Lauinger, T., Laoutaris, N., Rodriguez, P., Strufe, T., Biersack, E., and Kirda, E. 2012a. Privacy implications of ubiquitous caching in named data networking architectures. Technical Report TR-iSecLab-0812-001, ISecLab, Tech. Rep.

Lauinger, T., Laoutaris, N., Rodriguez, P., Strufe, T., Biersack, E., and Kirda, E. 2012b. Privacy risks in named data networking: What is the cost of performance? SIGCOMM Comput. Commun. Rev. 42, 5, 54–57. https://doi.org/10.1145/2378956.2378966.

Lederer, S., Mueller, C., Rainer, B., Timmerer, C., and Hellwagner, H. 2013. Adaptive streaming over content centric networks in mobile networks using multiple links. 2013 IEEE international conference on communications workshops (ICC), ieeexplore.ieee.org, 677–681. https://doi.org/10.1109/ICCW.2013.6649319.

Lee, E., Lee, E.K., Gerla, M., and Oh, S.Y. 2014. Vehicular cloud networking: Architecture and design principles. IEEE Communications Magazine 52, 2, 148–155. https://doi.org/10.1109/MCOM.2014.6736756.

Lee, J., Cho, S., and Kim, D. 2012a. Device mobility management in content-centric networking. IEEE Communications Magazine 50, 12, 28–34. https://doi.org/10.1109/MCOM.2012.6384448.

Lee, J., Hwang, J., Choi, N., and Yoo, C. 2013. SVC-based adaptive video streaming over Content-Centric networking. KSII Transactions on Internet & Information Systems 7, 10.

Lee, J., Kapoor, A., Amin, M.T.A., Wang, Z., Zhang, Z., Goyal, R., and Abdelzaher, T. 2015a. InfoMax: An information maximizing transport layer protocol for named data networks. 2015 24th international conference on computer communication and networks (ICCCN), 1–10. https://doi.org/10.1109/ICCCN.2015.7288420.

Lee, J. and Kim, D. 2011. Proxy-assisted content sharing using content centric networking (CCN) for resource-limited mobile consumer devices. IEEE Transactions on Consumer Electronics 57, 2, 477–483. https://doi.org/10.1109/TCE.2011.5955182.

Lee, J., Kim, D., Jang, M., and Lee, B. j. 2012b. Mobility management for mobile consumer devices in content centric networking (CCN). 2012 IEEE international conference on consumer electronics (ICCE), ieeexplore.ieee.org, 502–503. https://doi.org/10.1109/ICCE.2012.6161994.

Lee, J., Kim, D., Jang, M.W., and Lee, B.J. 2011. Proxy-based mobility management scheme in mobile content centric networking (CCN) environments. 2011 IEEE international conference on consumer electronics (ICCE), ieeexplore.ieee.org, 595–596. https://doi.org/10.1109/ICCE.2011.5722758.

Lee, J., Shim, M., and Lim, H. 2016. Name prefix matching using bloom filter pre-searching for content centric network. Journal of Network and Computer Applications 65, 36–47. https://doi.org/10.1016/j.jnca.2016.02.008.

Lee, M., Song, J., Cho, K., Pack, S., Kwon, T. “taekyoung”, Kangasharju, J., and Choi, Y. 2015b. Content discovery for information-centric networking. Computer Networks 83, 1–14. https://doi.org/10.1016/j.comnet.2014.10.006.

Lee, S., Kim, Y., Yeom, I., and Kim, Y. 2017. Active request management in stateful forwarding networks. Journal of Network and Computer Applications 93, 137–149. https://doi.org/10.1016/j.jnca.2017.05.011.

Lee, U., Rimac, I., and Hilt, V. 2010. Greening the internet with content-centric networking. Proceedings of the 1st international conference on Energy-Efficient computing and networking, ACM, 179–182. https://doi.org/10.1145/1791314.1791342.

Lehmann, M.B., Barcellos, M.P., and Mauthe, A. 2016. Providing producer mobility support in NDN through proactive data replication. NOMS 2016 - 2016 IEEE/IFIP network operations and management symposium, ieeexplore.ieee.org, 383–391. https://doi.org/10.1109/NOMS.2016.7502835.

Lei, K., Hou, C., Li, L., and Xu, K. 2015a. A RCP-Based congestion control protocol in named data networking. 2015 international conference on Cyber-Enabled distributed computing and knowledge discovery, ieeexplore.ieee.org, 538–541. https://doi.org/10.1109/CyberC.2015.67.

Lei, K., Wang, J., and Yuan, J. 2015b. An entropy-based probabilistic forwarding strategy in named data networking. 2015 IEEE international conference on communications (ICC), 5665–5671. https://doi.org/10.1109/ICC.2015.7249225.

Lei, K., Xun, Y., Yu, L., Chen, T., and Tan, Z. 2015c. NDN-Hippo: A streaming media system over named data networking. 2015 6th international conference on computing, communication and networking technologies (ICCCNT), 1–7. https://doi.org/10.1109/ICCCNT.2015.7395232.

Lertsinsrubtavee, A., Mekbungwan, P., and Weshsuwannarugs, N. 2014. Comparing NDN and CDN performance for content distribution service in community wireless mesh network. Proceedings of the AINTEC 2014 on asian internet engineering conference, ACM, 43:43–43:50. https://doi.org/10.1145/2684793.2684800.

Li, C., Liu, W., Wang, L., Li, M., and Okamura, K. 2015a. Energy-efficient quality of service aware forwarding scheme for Content-Centric networking. Journal of Network and Computer Applications 58, 241–254. https://doi.org/10.1016/j.jnca.2015.08.008.

Li, D., Li, J., and Du, Z. 2016a. An improved trie-based name lookup scheme for named data networking. 2016 IEEE symposium on computers and communication (ISCC), 1294–1296. https://doi.org/10.1109/ISCC.2016.7543915.

Li, F., Chen, F., Wu, J., and Xie, H. 2012a. Fast longest prefix name lookup for content-centric network forwarding. Proceedings of the eighth ACM/IEEE symposium on architectures for networking and communications systems, ACM, 73–74. https://doi.org/10.1145/2396556.2396569.

Li, H., Li, Y., Zhao, Z., Lin, T., Tang, H., and Ci, S. 2012b. A SIP-based real-time traffic mobility support scheme in named data networking. Journal of Networks 7, 6, 918–925.

Li, J., Shi, S., Ren, Y., Li, L., and Zhi, J. 2016b. A content Store-Based module for congestion control algorithms of named data networking. 2016 IEEE 18th international conference on high performance computing and communications; IEEE 14th international conference on smart city; IEEE 2nd international conference on data science and systems (HPCC/SmartCity/DSS), 253–259. https://doi.org/10.1109/HPCC-SmartCity-DSS.2016.0045.

Li, J., Wu, H., Liu, B., and Lu, J. 2012c. Effective caching schemes for minimizing Inter-ISP traffic in named data networking. 2012 IEEE 18th international conference on parallel and distributed systems, ieeexplore.ieee.org, 580–587. https://doi.org/10.1109/ICPADS.2012.84.

Li, J., Wu, H., Liu, B., Lu, J., Wang, Y., Wang, X., Zhang, Y., and Dong, L. 2012d. Popularity-driven coordinated caching in named data networking. Proceedings of the eighth ACM/IEEE symposium on architectures for networking and communications systems, ACM, 15–26. https://doi.org/10.1145/2396556.2396561.

Li, J., Wu, H., Liu, B., Lu, J., Wang, Y., Wang, X., Zhang, Y., and Dong, L. 2012e. Popularity-driven coordinated caching in named data networking. 2012 ACM/IEEE symposium on architectures for networking and communications systems (ANCS), 15–26.

Li, M., Pei, D., Zhang, X., Zhang, B., and Xu, K. 2015b. NDN live video broadcasting over wireless LAN. 2015 24th international conference on computer communication and networks (ICCCN), ieeexplore.ieee.org, 1–7. https://doi.org/10.1109/ICCCN.2015.7288434.

Li, Q., Zhang, X., Zheng, Q., Sandhu, R., and Fu, X. 2015c. LIVE: Lightweight integrity verification and content access control for named data networking. IEEE Transactions on Information Forensics and Security 10, 2, 308–320. https://doi.org/10.1109/TIFS.2014.2365742.

Li, Q., Zhao, Z., Xu, M., Jiang, Y., and Yang, Y. 2017. A smart routing scheme for named data networks. Computer communications 103, 83–93. https://doi.org/10.1016/j.comcom.2016.09.012.

Li, Y., Lin, T., Tang, H., and Sun, P. 2012f. A chunk caching location and searching scheme in content centric networking. 2012 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 2655–2659. https://doi.org/10.1109/ICC.2012.6363958.

Li, Y., Xie, H., Wen, Y., and Zhang, Z.L. 2013. Coordinating In-Network caching in Content-Centric networks: Model and analysis. 2013 IEEE 33rd international conference on distributed computing systems, ieeexplore.ieee.org, 62–72. https://doi.org/10.1109/ICDCS.2013.71.

Li, Y., Zhang, D., Yu, X., Liang, W., Long, J., and Qiao, H. 2014a. Accelerate NDN name lookup using FPGA: Challenges and a scalable approach. 2014 24th international conference on field programmable logic and applications (FPL), ieeexplore.ieee.org, 1–4. https://doi.org/10.1109/FPL.2014.6927403.

Li, Z., Chen, Y., Shi, H., and Liu, K. 2016c. NDN-GSM-R: A novel high-speed railway communication system via named data networking. EURASIP Journal on Wireless Communications and Networking 2016, 1, 48. https://doi.org/10.1186/s13638-016-0554-z.

Li, Z., Liu, K., Zhao, Y., and Ma, Y. 2014b. MaPIT: An enhanced pending interest table for NDN with mapping bloom filter. IEEE Communications Letters 18, 11, 1915–1918. https://doi.org/10.1109/LCOMM.2014.2359191.

Li, Z. and Simon, G. 2011. Time-Shifted TV in content centric networks: The case for cooperative In-Network caching. 2011 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/icc.2011.5963380.

Liang, C., Yu, F.R., and Zhang, X. 2015. Information-centric network function virtualization over 5g mobile wireless networks. IEEE network 29, 3, 68–74. https://doi.org/10.1109/MNET.2015.7113228.

Licklider, J.C.R. 1963. Memorandum for members and affiliates of the intergalactic computer network..

Lim, S.H., Ko, Y.B., Jung, G.H., Kim, J., and Jang, M.W. 2014. Inter-Chunk Popularity-Based Edge-First caching in Content-Centric networking. IEEE Communications Letters 18, 8, 1331–1334. https://doi.org/10.1109/LCOMM.2014.2329482.

Lin, Z., Kuai, M., and Hong, X. 2016. Reliable forwarding strategy in vehicular networks using NDN. 2016 IEEE 84th vehicular technology conference (VTC-Fall), ieeexplore.ieee.org, 1–5. https://doi.org/10.1109/VTCFall.2016.7881195.

Lindblom, J., Huang, M.-C., Burke, J., and Zhang, L. 2013. FileSync/NDN: Peer-to-peer file sync over named data networking. NDN Technical Report NDN-0012.

Liu, B., Jiang, T., Wang, Z., and Cao, Y. 2017a. Object-Oriented network: A Named-Data architecture toward the future internet. IEEE Internet of Things Journal 4, 4, 957–967. https://doi.org/10.1109/JIOT.2017.2714658.

Liu, H., Chen, Z., Tian, X., Wang, X., and Tao, M. 2014a. On content-centric wireless delivery networks. IEEE Wireless Communications 21, 6, 118–125. https://doi.org/10.1109/MWC.2014.7000979.

Liu, T., Tian, M., and Cheng, D. 2013a. Content activity based short-cut routing in content centric networks. 2013 IEEE 4th international conference on software engineering and service science, 479–482. https://doi.org/10.1109/ICSESS.2013.6615353.

Liu, W.-X., Yu, S.-Z., Tan, G., and Cai, J. 2017b. Information-centric networking with built-in network coding to achieve multisource transmission at network-layer. Computer Networks 115, 110–128. https://doi.org/10.1016/j.comnet.2015.05.009.

Liu, W.X., Yu, S.Z., and Zhu, P.Y. 2013b. Multisource dissemination in content-centric networking. 2013 fourth international conference on the network of the future (NoF), ieeexplore.ieee.org, 1–5. https://doi.org/10.1109/NOF.2013.6724510.

Liu, X., João Nicolau, M., Costa, A., Macedo, J., and Santos, A. 2016a. A geographic opportunistic forwarding strategy for vehicular named data networking. In: Intelligent distributed computing IX. Springer, Cham, 509–521. https://doi.org/10.1007/978-3-319-25017-5\_48.

Liu, X., Li, Z., Yang, P., and Dong, Y. 2017c. Information-centric mobile ad hoc networks and content routing: A survey. Ad Hoc Networks 58, 255–268. https://doi.org/10.1016/j.adhoc.2016.04.005.

Liu, Y., Lehman, V., and Wang, L. 2015. Efficient FIB caching using minimal non-overlapping prefixes. Computer Networks 83, 85–99. https://doi.org/10.1016/j.comnet.2015.03.003.

Liu, Y. and Wadekar, H. 2016. SDAR: Software defined Intra-Domain routing in named data networks. 2016 IEEE 15th international symposium on network computing and applications (NCA), 158–161. https://doi.org/10.1109/NCA.2016.7778611.

Liu, Y. and Yu, S.-Z. 2016. Network coding-based multisource content delivery in content centric networking. Journal of Network and Computer Applications 64, Supplement C, 167–175. https://doi.org/10.1016/j.jnca.2016.02.007.

Liu, Z., Ji, Y., Jiang, X., and Tanaka, Y. 2016b. User-behavior driven video caching in content centric network. Proceedings of the 3rd ACM conference on Information-Centric networking, ACM, 197–198. https://doi.org/10.1145/2984356.2985227.

Liu, Z., Li, Y., Cui, B., Su, L., Jin, D., and Zeng, L. 2014b. GrainFlow: Enable testing for future internet architectures by per-bit customization. Computer Networks 69, 121–132. https://doi.org/10.1016/j.comnet.2014.04.020.

Lomas, N. 2016. After a decade of R&D, MaidSafe’s decentralized network opens for alpha testing. https://techcrunch.com/2016/08/12/after-a-decade-of-rd-maidsafes-decentralized-network-opens-for-alpha-testing/.

Loo, J. and Aiash, M. 2015a. Special issue on information-centric network architecture, protocols, algorithms and applications. Journal of Network and Computer Applications 50, Supplement C, 60–63. https://doi.org/10.1016/j.jnca.2014.11.003.

Loo, J. and Aiash, M. 2015b. Challenges and solutions for secure information centric networks: A case study of the NetInf architecture. Journal of Network and Computer Applications 50, 64–72. https://doi.org/10.1016/j.jnca.2014.06.003.

Louati, W., Ben-Ameur, W., and Zeghlache, D. 2015. A bottleneck-free tree-based name resolution system for Information-Centric networking. Computer Networks 91, 341–355. https://doi.org/10.1016/j.comnet.2015.08.024.

Lu, Y., Li, X., Yu, Y.T., and Gerla, M. 2014. Information-centric delay-tolerant mobile ad-hoc networks. 2014 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 428–433. https://doi.org/10.1109/INFCOMW.2014.6849270.

Lundkvist, C. and Lilic, J. 2016. An introduction to IPFS. https://medium.com/@ConsenSys/an-introduction-to-ipfs-9bba4860abd0.

Luo, Y., Tran, P.N., An, C., Eymann, J., Kreft, L., and Timm-Giel, A. 2013. A novel handover prediction scheme in content centric networking using nonlinear autoregressive exogenous model. 2013 IEEE 77th vehicular technology conference (VTC spring), ieeexplore.ieee.org, 1–5. https://doi.org/10.1109/VTCSpring.2013.6691837.

Machado, M., Doucette, C., and Byers, J.W. 2015. Linux XIA: An interoperable meta network architecture to crowdsource the future internet. Proceedings of the eleventh ACM/IEEE symposium on architectures for networking and communications systems, IEEE Computer Society, 147–158.

Mai, H.L., Nguyen, N.T., Doyen, G., Ploix, A., and Cogranne, R. 2016. On the readiness of NDN for a secure deployment: The case of pending interest table. Management and security in the age of hyperconnectivity, Springer, Cham, 98–110. https://doi.org/10.1007/978-3-319-39814-3\_10.

Majeed, M.F., Dailey, M.N., Khan, R., and Tunpan, A. 2017. Pre-caching: A proactive scheme for caching video traffic in named data mesh networks. Journal of Network and Computer Applications 87, 116–130. https://doi.org/10.1016/j.jnca.2017.03.012.

Mangili, M., Martignon, F., and Capone, A. 2013. A comparative study of Content-Centric and Content-Distribution networks: Performance and bounds. 2013 IEEE global communications conference (GLOBECOM), ieeexplore.ieee.org, 1403–1409. https://doi.org/10.1109/GLOCOM.2013.6831270.

Mangili, M., Martignon, F., and Paraboschi, S. 2015. A cache-aware mechanism to enforce confidentiality, trackability and access policy evolution in Content-Centric networks. Computer Networks 76, 126–145. https://doi.org/10.1016/j.comnet.2014.11.010.

Mansilha, R.B., Barcellos, M.P., Leonardi, E., and Rossi, D. 2017. Exploiting parallelism in hierarchical content stores for high-speed ICN routers. Computer Networks 125, 132–145. https://doi.org/10.1016/j.comnet.2017.04.041.

Mansour, D., Braun, T., and Anastasiades, C. 2014. NextServe framework: Supporting services over Content-Centric networking. Wired/Wireless internet communications, Springer, Cham, 189–199. https://doi.org/10.1007/978-3-319-13174-0\_15.

Marchal, X., Aoun, M.E., Mathieu, B., Mallouli, W., Cholez, T., Doyen, G., Truong, P., Ploix, A., and De Oca, E.M. 2016a. A virtualized and monitored NDN infrastructure featuring a NDN/HTTP gateway. Proceedings of the 3rd ACM conference on Information-Centric networking, ACM, 225–226. https://doi.org/10.1145/2984356.2985238.

Marchal, X., Cholez, T., and Festor, O. 2016b. Server-side performance evaluation of NDN. Proceedings of the 3rd ACM conference on Information-Centric networking, ACM, 148–153. https://doi.org/10.1145/2984356.2984364.

Masoudi, R. and Ghaffari, A. 2016. Software defined networks: A survey. Journal of Network and Computer Applications 67, 1–25. https://doi.org/10.1016/j.jnca.2016.03.016.

Massawe, E.A., Du, S., and Zhu, H. 2013. A scalable and Privacy-Preserving named data networking architecture based on bloom filters. 2013 IEEE 33rd international conference on distributed computing systems workshops, ieeexplore.ieee.org, 22–26. https://doi.org/10.1109/ICDCSW.2013.32.

Mastorakis, S., Afanasyev, A., Yu, Y., and Zhang, L. 2017a. NTorrent: Peer-to-Peer file sharing in named data networking. 2017 26th international conference on computer communication and networks (ICCCN), 1–10. https://doi.org/10.1109/ICCCN.2017.8038462.

Mastorakis, S., Afanasyev, A., and Zhang, L. 2017b. On the evolution of ndnSIM: An Open-Source simulator for NDN experimentation. SIGCOMM Comput. Commun. Rev. 47, 3, 19–33. https://doi.org/10.1145/3138808.3138812.

Mathieu, B., Truong, P., You, W., and Peltier, J. f. 2012. Information-centric networking: A natural design for social network applications. IEEE Communications Magazine 50, 7, 44–51. https://doi.org/10.1109/MCOM.2012.6231278.

Mauri, G. and Verticale, G. 2013. Distributing key revocation status in named data networking. Advances in communication networking, Springer, Berlin, Heidelberg, 310–313. https://doi.org/10.1007/978-3-642-40552-5\_31.

Mauri, G. and Verticale, G. 2017. Up-to-date key retrieval for information centric networking. Computer Networks 112, 1–11. https://doi.org/10.1016/j.comnet.2016.10.018.

Maymounkov, P. and Mazières, D. 2002. Kademlia: A Peer-to-Peer information system based on the XOR metric. Peer-to-Peer Systems, Springer, 53–65. https://doi.org/10.1007/3-540-45748-8\_5.

Meisel, M., Pappas, V., and Zhang, L. 2010. Ad hoc networking via named data. Proceedings of the fifth ACM international workshop on mobility in the evolving internet architecture, ACM, 3–8. https://doi.org/10.1145/1859983.1859986.

Mejri, S., Touati, H., and Kamoun, F. 2016. Preventing unnecessary interests retransmission in named data networking. 2016 international symposium on networks, computers and communications (ISNCC), 1–6. https://doi.org/10.1109/ISNCC.2016.7746058.

Mekinda, L. and Muscariello, L. 2016. Supervised machine Learning-Based routing for named data networking. 2016 IEEE global communications conference (GLOBECOM), 1–6. https://doi.org/10.1109/GLOCOM.2016.7842307.

Mendes, P. 2015. Combining data naming and context awareness for pervasive networks. Journal of Network and Computer Applications 50, Supplement C, 114–125. https://doi.org/10.1016/j.jnca.2014.09.015.

Ming, Z., Xu, M., and Wang, D. 2014. Age-based cooperative caching in information-centric networking. 2014 23rd international conference on computer communication and networks (ICCCN), ieeexplore.ieee.org, 1–8. https://doi.org/10.1109/ICCCN.2014.6911725.

Misra, S., Tourani, R., and Majd, N.E. 2013. Secure content delivery in information-centric networks: Design, implementation, and analyses. Proceedings of the 3rd ACM SIGCOMM workshop on information-centric networking, ACM, 73–78. https://doi.org/10.1145/2491224.2491228.

Mohaisen, A., Zhang, X., Schuchard, M., Xie, H., and Kim, Y. 2013. Protecting access privacy of cached contents in information centric networks. Proceedings of the 8th ACM SIGSAC symposium on information, computer and communications security, ACM, 173–178. https://doi.org/10.1145/2484313.2484335.

Moiseenko, I. 2014. Fetching content in named data networking with embedded manifests. Technical Report NDN-0025, NDN; named-data.net.

Moiseenko, I., Stapp, M., and Oran, D. 2014. Communication patterns for web interaction in named data networking. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 87–96. https://doi.org/10.1145/2660129.2660152.

Moiseenko, I., Wang, L., and Zhang, L. 2015. Consumer / producer communication with application level framing in named data networking. Proceedings of the 2Nd ACM conference on Information-Centric networking, ACM, 99–108. https://doi.org/10.1145/2810156.2810160.

Moiseenko, I. and Zhang, L. 2014. Consumer-producer API for named data networking. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 177–178. https://doi.org/10.1145/2660129.2660158.

Moll, P., Posch, D., and Hellwagner, H. 2017. Investigation of push-based traffic for conversational services in named data networking. 2017 IEEE international conference on multimedia expo workshops (ICMEW), 315–320. https://doi.org/10.1109/ICMEW.2017.8026212.

Monteiro, K., Marot, M., and Ibn-khedher, H. 2017. Review on microgrid communications solutions: A named data networking #8211; fog approach. 2017 16th annual mediterranean ad hoc networking workshop (Med-Hoc-Net), 1–8. https://doi.org/10.1109/MedHocNet.2017.8001656.

Montpetit, M.-J., Westphal, C., and Trossen, D. 2012. Network coding meets information-centric networking: An architectural case for information dispersion through native network coding. Proceedings of the 1st ACM workshop on emerging Name-Oriented mobile networking design - architecture, algorithms, and applications, ACM, 31–36. https://doi.org/10.1145/2248361.2248370.

Moon, C., Han, S., Woo, H., and Kim, D. 2016. Named data networking for infrastructure wireless networks. 2016 IEEE international conference on consumer electronics (ICCE), 343–344. https://doi.org/10.1109/ICCE.2016.7430640.

Mori, K., Kamimoto, T., and Shigeno, H. 2015. Push-Based Traffic-Aware cache management in named data networking. 2015 18th international conference on Network-Based information systems, 309–316. https://doi.org/10.1109/NBiS.2015.48.

Mukerjee, M.K., Han, D., Seshan, S., and Steenkiste, P. 2013. Understanding tradeoffs in incremental deployment of new network architectures. Proceedings of the ninth ACM conference on emerging networking experiments and technologies, ACM, 271–282. https://doi.org/10.1145/2535372.2535396.

Mun, J.H. and Lim, H. 2017. Cache sharing using bloom filters in named data networking. Journal of Network and Computer Applications 90, 74–82. https://doi.org/10.1016/j.jnca.2017.04.011.

Muñoz, C., Wang, L., Solana, E., and Crowcroft, J. 2017. I(FIB)F: Iterated bloom filters for routing in named data networks. 2017 international conference on networked systems (NetSys), 1–8. https://doi.org/10.1109/NetSys.2017.7903945.

Muscariello, L., Carofiglio, G., and Gallo, M. 2011. Bandwidth and storage sharing performance in information centric networking. Proceedings of the ACM SIGCOMM workshop on information-centric networking, ACM, 26–31. https://doi.org/10.1145/2018584.2018593.

Muto, T., Kanai, K., and Katto, J. 2015. Implementation evaluation of proactive content caching using DASH-NDN-JS. 2015 IEEE wireless communications and networking conference (WCNC), ieeexplore.ieee.org, 2239–2244. https://doi.org/10.1109/WCNC.2015.7127815.

Nakamura, R., Okada, K., Sekiya, Y., and Esaki, H. 2015. A common data plane for multiple overlay networks. Computer Networks 92, 240–250. https://doi.org/10.1016/j.comnet.2015.09.031.

Narayanan, A. and Oran, D. 2011. NDN and IP routing: Can it scale? Proposed Information-Centric networking research group (ICNRG), side meeting at IETF-82, researchgate.net.

Naylor, D., Mukerjee, M.K., Agyapong, P., Grandl, R., Kang, R., Machado, M., Brown, S., Doucette, C., Hsiao, H.-C., Han, D., Kim, T.H.-J., Lim, H., Ovon, C., Zhou, D., Lee, S.B., Lin, Y.-H., Stuart, C., Barrett, D., Akella, A., Andersen, D., Byers, J., Dabbish, L., Kaminsky, M., Kiesler, S., Peha, J., Perrig, A., Seshan, S., Sirbu, M., and Steenkiste, P. 2014. XIA: Architecting a more trustworthy and evolvable internet. SIGCOMM Comput. Commun. Rev. 44, 3, 50–57. https://doi.org/10.1145/2656877.2656885.

Nguyen, A.-D., Sénac, P., and Diaz, M. 2010. STIgmergy routing (STIR) for content-centric delay-tolerant networks. LAWDN-Latin-American workshop on dynamic networks, hal.inria.fr, 4–p.

Nguyen, T., Marchal, X., Doyen, G., Cholez, T., and Cogranne, R. 2017. Content poisoning in named data networking: Comprehensive characterization of real deployment. 2017 IFIP/IEEE symposium on integrated network and service management (IM), 72–80. https://doi.org/10.23919/INM.2017.7987266.

Nguyen, T.N., Cogranne, R., Doyen, G., and Retraint, F. 2015. Detection of interest flooding attacks in named data networking using hypothesis testing. 2015 IEEE international workshop on information forensics and security (WIFS), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/WIFS.2015.7368571.

Nguyen, X.N., Saucez, D., and Turletti, T. 2013. Efficient caching in Content-Centric networks using OpenFlow. 2013 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 67–68. https://doi.org/10.1109/INFCOMW.2013.6562846.

Ni, A. and Lim, H. 2015. A named data networking testbed with global NDN connection. 한국통신학회논문지 40, 12, 2419–2426.

Ni, J., Tan, X., Shao, Y., Wu, X., and Zhu, J. 2017. QoE-driven rate adaptation algorithm for fair dynamic adaptive video streaming in named data networking. 2017 36th chinese control conference (CCC), 7599–7604. https://doi.org/10.23919/ChiCC.2017.8028557.

Nie, L., Jiang, D., and Guo, L. 2015. A convex optimization-based traffic matrix estimation approach in IP-over-WDM backbone networks. Journal of Network and Computer Applications 50, Supplement C, 32–38. https://doi.org/10.1016/j.jnca.2014.12.001.

Ntuli, N. and Han, S. 2012. Detecting router cache snooping in named data networking. 2012 international conference on ICT convergence (ICTC), ieeexplore.ieee.org, 714–718. https://doi.org/10.1109/ICTC.2012.6387155.

Ogawara, T., Kawahara, Y., and Asami, T. 2013a. Information dissemination performance of a disaster-tolerant NDN-based distributed application in disrupted cellular networks. IEEE P2P 2013 proceedings, ieeexplore.ieee.org, 1–5. https://doi.org/10.1109/P2P.2013.6688722.

Ogawara, T., Kawahara, Y., and Asami, T. 2013b. Disaster-tolerant authentication system for NDN using hierarchical ID-Based encryption. 2013 21st IEEE international conference on network protocols (ICNP), ieeexplore.ieee.org, 1–2. https://doi.org/10.1109/ICNP.2013.6733631.

Ogden, M., Robinson, D., Hand, J., McKelvey, K., and Buus, M. 2017. Dat project. https://datproject.org/.

Oh, S.Y., Lau, D., and Gerla, M. 2010. Content centric networking in tactical and emergency MANETs. 2010 IFIP wireless days, ieeexplore.ieee.org, 1–5. https://doi.org/10.1109/WD.2010.5657708.

Ohara, M. and Fukumoto, S. 2017. Off-Path caching for file versioning in named data networking. 2017 47th annual IEEE/IFIP international conference on dependable systems and networks workshops (DSN-W), 107–108. https://doi.org/10.1109/DSN-W.2017.15.

Ohsugi, K., Takemasa, J., Koizumi, Y., Hasegawa, T., and Psaras, I. 2016. Power consumption model of NDN-Based multicore software router based on detailed protocol analysis. IEEE Journal on Selected Areas in Communications 34, 5, 1631–1644. https://doi.org/10.1109/JSAC.2016.2520278.

Olschanowsky, C., Shannigrahi, S., and Papadopoulos, C. 2014. Supporting climate research using named data networking. 2014 IEEE 20th international workshop on local metropolitan area networks (LANMAN), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/LANMAN.2014.7028640.

Oran, D.R. and Narayanan, A. 2016. Congestion control using congestion prefix information in a named data networking environment. https://patentimages.storage.googleapis.com/24/ef/87/483ba04b8341b2/US9270598.pdf.

Oueslati, S., Roberts, J., and Sbihi, N. 2012. Flow-aware traffic control for a content-centric network. 2012 proceedings IEEE INFOCOM, ieeexplore.ieee.org, 2417–2425. https://doi.org/10.1109/INFCOM.2012.6195631.

Pacifici, V. and Dán, G. 2013. Content-peering dynamics of autonomous caches in a content-centric network. 2013 proceedings IEEE INFOCOM, ieeexplore.ieee.org, 1079–1087. https://doi.org/10.1109/INFCOM.2013.6566898.

Paciti, E., Akbarinia, R., and El-Dick, M. 2012. P2P techniques for decentralized applications. Morgan & Claypool.

Paknezhad, M. and Keshtgary, M. 2014. Security and privacy issues of implementing cloud computing on NDN. Journal of Basic and Applied Scientific Research 4, 3, 270–279.

Pan, J., Paul, S., and Jain, R. 2011. A survey of the research on future internet architectures. IEEE Communications Magazine 49, 7, 26–36. https://doi.org/10.1109/MCOM.2011.5936152.

Parisis, G., Sourlas, V., Katsaros, K.V., Chai, W.K., Pavlou, G., and Wakeman, I. 2017. Efficient content delivery through fountain coding in opportunistic information-centric networks. Computer communications 100, 118–128. https://doi.org/10.1016/j.comcom.2016.12.005.

Parisis, G., Trossen, D., and Syrivelis, D. 2013. Implementation and evaluation of an information-centric network. 2013 IFIP networking conference, ieeexplore.ieee.org, 1–9.

Park, C., Kwon, T., and Choi, Y. 2010. Scalability problem for interest diffusion in content-centric network. NCS, Dec.

Park, H., Jang, H., and Kwon, T. 2014. Popularity-based congestion control in named data networking. 2014 sixth international conference on ubiquitous and future networks (ICUFN), ieeexplore.ieee.org, 166–171. https://doi.org/10.1109/ICUFN.2014.6876774.

Park, H., Widjaja, I., and Lee, H. 2012. Detection of cache pollution attacks using randomness checks. 2012 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 1096–1100. https://doi.org/10.1109/ICC.2012.6363885.

Park, J., Kim, J., Jang, M. w., and Lee, B.J. 2013. Time-based interest protocol for real-time content streaming in content-centric networking (CCN). 2013 IEEE international conference on consumer electronics (ICCE), ieeexplore.ieee.org, 512–513. https://doi.org/10.1109/ICCE.2013.6486999.

Passarella, A. 2012. A survey on content-centric technologies for the current internet: CDN and P2P solutions. Computer communications 35, 1, 1–32. https://doi.org/10.1016/j.comcom.2011.10.005.

Pelusi, L., Passarella, A., and Conti, M. 2006. Opportunistic networking: Data forwarding in disconnected mobile ad hoc networks. IEEE Communications Magazine 44, 11, 134–141. https://doi.org/10.1109/MCOM.2006.248176.

Pentikousis, K., Ohlman, B., Corujo, D., Boggia, G., Tyson, G., Davies, E., Molinaro, A., and Eum, S. 2015. Information-centric networking: Baseline scenarios. rfc-editor.org.

Perez, V., Garip, M.T., Lam, S., and Zhang, L. 2013. Security evaluation of a control system using named data networking. 2013 21st IEEE international conference on network protocols (ICNP), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/ICNP.2013.6733672.

Perino, D. and Varvello, M. 2011. A reality check for content centric networking. Proceedings of the ACM SIGCOMM workshop on information-centric networking, ACM, 44–49. https://doi.org/10.1145/2018584.2018596.

Pesavento, D., Grassi, G., Palazzi, C.E., and Pau, G. 2013. A naming scheme to represent geographic areas in NDN. 2013 IFIP wireless days (WD), ieeexplore.ieee.org, 1–3. https://doi.org/10.1109/WD.2013.6686541.

Pham, T.M., Fdida, S., and Antoniadis, P. 2013. Pricing in Information-Centric network interconnection. 2013 IFIP networking conference, ieeexplore.ieee.org, 1–9.

Piro, G., Ciancaglini, V., Loti, R., Grieco, L.A., and Liquori, L. 2015. Providing Crowd-Sourced and Real-Time media services through an NDN-Based platform. In: Modeling and processing for Next-Generation Big-Data technologies. Springer, Cham, 405–441. https://doi.org/10.1007/978-3-319-09177-8\_17.

Piro, G., Cianci, I., Grieco, L.A., Boggia, G., and Camarda, P. 2014. Information centric services in smart cities. The Journal of systems and software 88, 169–188. https://doi.org/10.1016/j.jss.2013.10.029.

Posch, D., Kreuzberger, C., Rainer, B., and Hellwagner, H. 2014. Client starvation: A shortcoming of client-driven adaptive streaming in named data networking. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 183–184. https://doi.org/10.1145/2660129.2660162.

Posch, D., Rainer, B., and Hellwagner, H. 2017a. Towards a Context-Aware forwarding plane in named data networking supporting QoS. ACM SIGCOMM Computer Communication Review 47, 1, 4–14. https://doi.org/10.1145/3041027.3041029.

Posch, D., Rainer, B., and Hellwagner, H. 2017b. SAF: Stochastic adaptive forwarding in named data networking. IEEE/ACM Transactions on Networking 25, 2, 1089–1102. https://doi.org/10.1109/TNET.2016.2614710.

Psaras, I., Chai, W.K., and Pavlou, G. 2012. Probabilistic in-network caching for information-centric networks. Proceedings of the second edition of the ICN workshop on information-centric networking, ACM, 55–60. https://doi.org/10.1145/2342488.2342501.

Psaras, I., Chai, W.K., and Pavlou, G. 2014. In-Network cache management and resource allocation for Information-Centric networks. IEEE Transactions on Parallel and Distributed Systems 25, 11, 2920–2931. https://doi.org/10.1109/TPDS.2013.304.

Qian, H., Ravindran, R., Wang, G.Q., and Medhi, D. 2013. Probability-based adaptive forwarding strategy in named data networking. 2013 IFIP/IEEE international symposium on integrated network management (IM 2013), ieeexplore.ieee.org, 1094–1101.

Qiao, X., Nan, G., Peng, Y., Guo, L., Chen, J., Sun, Y., and Chen, J. 2015. NDNBrowser: An extended web browser for named data networking. Journal of Network and Computer Applications 50, 134–147. https://doi.org/10.1016/j.jnca.2014.06.009.

Qiao, X., Nan, G., Tan, W., Guo, L., Chen, J., Quan, W., and Tu, Y. 2014. CCNxTomcat: An extended web server for Content-Centric networking. Computer Networks 75, 276–296. https://doi.org/10.1016/j.comnet.2014.10.014.

Quan, W., Xu, C., Guan, J., Zhang, H., and Grieco, L.A. 2014a. Scalable name lookup with adaptive prefix bloom filter for named data networking. IEEE Communications Letters 18, 1, 102–105. https://doi.org/10.1109/LCOMM.2013.112413.132231.

Quan, W., Xu, C., Vasilakos, A.V., Guan, J., Zhang, H., and Grieco, L.A. 2014b. TB2F: Tree-bitmap and bloom-filter for a scalable and efficient name lookup in Content-Centric networking. 2014 IFIP networking conference, ieeexplore.ieee.org, 1–9. https://doi.org/10.1109/IFIPNetworking.2014.6857122.

Quevedo, J., Antunes, M., Corujo, D., Gomes, D., and Aguiar, R.L. 2016. On the application of contextual IoT service discovery in information centric networks. Computer communications 89-90, 117–127. https://doi.org/10.1016/j.comcom.2016.03.011.

Quevedo, J., Corujo, D., and Aguiar, R. 2014. Consumer driven information freshness approach for content centric networking. 2014 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 482–487. https://doi.org/10.1109/INFCOMW.2014.6849279.

Rahman, A., Trossen, D., Kutscher, D., and Ravindraw, R. 2018. Deployment considerations for Information-Centric networking (ICN)‚. IETF.

Rainer, B., Posch, D., and Hellwagner, H. 2016. Investigating the performance of Pull-Based dynamic adaptive streaming in NDN. IEEE Journal on Selected Areas in Communications 34, 8, 2130–2140. https://doi.org/10.1109/JSAC.2016.2577365.

Ran, J., Lv, N., Zhang, D., Ma, Y., and Xie, Z. 2013. On performance of cache policies in named data networking. International conference on advanced computer science and electronics information, atlantis-press.com, 668–671.

Rao, Y., Gao, D., and Luo, H. 2014a. NLBA: A novel provider mobility support approach in mobile NDN environment. 2014 IEEE 11th consumer communications and networking conference (CCNC), ieeexplore.ieee.org, 188–193. https://doi.org/10.1109/CCNC.2014.6866569.

Rao, Y., Luo, H., Gao, D., Zhou, H., and Zhang, H. 2014b. LBMA: A novel locator based mobility support approach in named data networking. China Communications 11, 4, 111–120. https://doi.org/10.1109/CC.2014.6827573.

Rao, Y., Zhou, H., Gao, D., Luo, H., and Liu, Y. 2013. Proactive caching for enhancing User-Side mobility support in named data networking. 2013 seventh international conference on innovative mobile and internet services in ubiquitous computing, ieeexplore.ieee.org, 37–42. https://doi.org/10.1109/IMIS.2013.16.

Rathore, M.M., Paul, A., Hong, W.-H., Seo, H., Awan, I., and Saeed, S. 2017. Exploiting IoT and big data analytics: Defining smart digital city using Real-Time urban data. Sustainable Cities and Society. https://doi.org/10.1016/j.scs.2017.12.022.

Ravi, A., Ramanathan, P., and Sivalingam, K.M. 2015. Integrated network coding and caching in information-centric networks: Revisiting pervasive caching in the ICN framework. Photonic Network Communications 30, 3, 416–427. https://doi.org/10.1007/s11107-015-0557-4.

Ravindran, R., Lo, S., Zhang, X., and Wang, G. 2012a. Supporting seamless mobility in named data networking. 2012 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 5854–5869. https://doi.org/10.1109/ICC.2012.6364701.

Ravindran, R., Wang, G., Zhang, X., and Chakraborti, A. 2012b. Supporting dual-mode forwarding in content-centric network. 2012 IEEE international conference on advanced networks and telecommunciations systems (ANTS), ieeexplore.ieee.org, 55–60. https://doi.org/10.1109/ANTS.2012.6524228.

Reardon, R.D., Karmasin, B.M., Prieto, L.M., Hurley, W.J., and VonMutius, J. 2003. A SIDE-BY-SIDE COMPARISON OF STEP FEED BNR AND SIMULTANEOUS NDN. Proceedings of the Water Environment Federation 7, 563–584. https://doi.org/10.2175/193864703784640866.

Refaei, M.T., Ha, S., Cavallero, Z., and Hager, C. 2016. Named data networking for tactical communication environments. 2016 IEEE 15th international symposium on network computing and applications (NCA), 118–121. https://doi.org/10.1109/NCA.2016.7778604.

Rehman, R.A., Kim, J., and Kim, B.-S. 2015. NDN-CRAHNs: Named data networking for cognitive radio ad hoc networks. Mobile Information Systems 2015. https://doi.org/10.1155/2015/281893.

Ren, J., Qi, W., Westphal, C., Wang, J., Lu, K., Liu, S., and Wang, S. 2014. MAGIC: A distributed MAx-Gain in-network caching strategy in information-centric networks. 2014 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 470–475. https://doi.org/10.1109/INFCOMW.2014.6849277.

Ren, Y., Li, J., Li, L., Shi, S., Zhi, J., and Wu, H. 2017. Modeling content transfer performance in information-centric networking. Future generations computer systems: FGCS 74, 12–19. https://doi.org/10.1016/j.future.2017.04.013.

Ren, Y., Li, J., Shi, S., Li, L., and Chang, X. 2015. An interest control protocol for named data networking based on explicit feedback. Proceedings of the eleventh ACM/IEEE symposium on architectures for networking and communications systems, IEEE Computer Society, 199–200.

Ren, Y., Li, J., Shi, S., Li, L., and Wang, G. 2016a. An explicit congestion control algorithm for named data networking. 2016 IEEE conference on computer communications workshops (INFOCOM WKSHPS), 294–299. https://doi.org/10.1109/INFCOMW.2016.7562089.

Ren, Y., Li, J., Shi, S., Li, L., Wang, G., and Zhang, B. 2016b. Congestion control in named data networking–a survey. Computer communications 86, 1–11.

Ren, Y., Li, J., Shi, S., Li, L., Wang, G., and Zhang, B. 2016c. Congestion control in named data networking – a survey. Computer communications 86, 1–11. https://doi.org/10.1016/j.comcom.2016.04.017.

Ren, Z., Hail, M.A., and Hellbrück, H. 2013. CCN-WSN - a lightweight, flexible Content-Centric networking protocol for wireless sensor networks. 2013 IEEE eighth international conference on intelligent sensors, sensor networks and information processing, ieeexplore.ieee.org, 123–128. https://doi.org/10.1109/ISSNIP.2013.6529776.

Rezaeifar, Z., Wang, J., and Oh, H. 2018. A trust-based method for mitigating cache poisoning in name data networking. Journal of Network and Computer Applications 104, 117–132. https://doi.org/10.1016/j.jnca.2017.12.013.

Rezazad, M. and Tay, Y.C. 2013. A cache miss equation for partitioning an NDN content store. Proceedings of the 9th asian internet engineering conference, ACM, 1–8. https://doi.org/10.1145/2534142.2534143.

Rezazad, M. and Tay, Y.C. 2015. CCndnS: A strategy for spreading content and decoupling NDN caches. 2015 IFIP networking conference (IFIP networking), ieeexplore.ieee.org, 1–9. https://doi.org/10.1109/IFIPNetworking.2015.7145295.

Ribeiro, I., Rocha, A., Albuquerque, C., and Guimarães, F. 2014. On the possibility of mitigating content pollution in Content-Centric networking. 39th annual IEEE conference on local computer networks, ieeexplore.ieee.org, 498–501. https://doi.org/10.1109/LCN.2014.6925826.

Roberts, J. and Sbihi, N. 2013. Exploring the memory-bandwidth tradeoff in an information-centric network. Proceedings of the 2013 25th international teletraffic congress (ITC), ieeexplore.ieee.org, 1–9. https://doi.org/10.1109/ITC.2013.6662936.

Rossi, D. and Rossini, G. 2011. Caching performance of content centric networks under multi-path routing (and more). Relatório técnico, Telecom ParisTech, 1–6.

Rossi, D. and Rossini, G. 2012. On sizing CCN content stores by exploiting topological information. 2012 proceedings IEEE INFOCOM workshops, ieeexplore.ieee.org, 280–285. https://doi.org/10.1109/INFCOMW.2012.6193506.

Rossini, G. and Rossi, D. 2012. A dive into the caching performance of content centric networking. 2012 IEEE 17th international workshop on computer aided modeling and design of communication links and networks (CAMAD), ieeexplore.ieee.org, 105–109. https://doi.org/10.1109/CAMAD.2012.6335307.

Rowshanrad, S., Parsaei, M.R., and Keshtgari, M. 2016. IMPLEMENTING NDN USING SDN: A REVIEW ON METHODS AND APPLICATIONS. IIUM Engineering Journal 17, 2, 11–20.

Sadiku, M.N.O., Shadare, A.E., and Musa, S.M. 2017. Named data networking. International journal of engineering research and applications 6, 7, 371–372.

Saha, S., Lukyanenko, A., and Ylä-Jääski, A. 2013. Cooperative caching through routing control in information-centric networks. 2013 proceedings IEEE INFOCOM, ieeexplore.ieee.org, 100–104. https://doi.org/10.1109/INFCOM.2013.6566743.

Saino, L., Cocora, C., and Pavlou, G. 2013a. CCTCP: A scalable receiver-driven congestion control protocol for content centric networking. 2013 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 3775–3780. https://doi.org/10.1109/ICC.2013.6655143.

Saino, L., Psaras, I., and Pavlou, G. 2013b. Hash-routing schemes for information centric networking. Proceedings of the 3rd ACM SIGCOMM workshop on information-centric networking, ACM, 27–32. https://doi.org/10.1145/2491224.2491232.

Salah, H., Wulfheide, J., and Strufe, T. 2015a. Lightweight coordinated defence against interest flooding attacks in NDN. 2015 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 103–104. https://doi.org/10.1109/INFCOMW.2015.7179364.

Salah, H., Wulfheide, J., and Strufe, T. 2015b. Coordination supports security: A new defence mechanism against interest flooding in NDN. 2015 IEEE 40th conference on local computer networks (LCN), ieeexplore.ieee.org, 73–81. https://doi.org/10.1109/LCN.2015.7366285.

Salsano, S., Detti, A., Cancellieri, M., Pomposini, M., and Blefari-Melazzi, N. 2012. Transport-layer issues in information centric networks. Proceedings of the second edition of the ICN workshop on information-centric networking, ACM, 19–24. https://doi.org/10.1145/2342488.2342493.

Saltarin, J., Bourtsoulatze, E., Thomos, N., and Braun, T. 2017. Adaptive video streaming with network coding enabled named data networking. IEEE Transactions on Multimedia 19, 10, 2182–2196. https://doi.org/10.1109/TMM.2017.2737950.

Santos, F. Neves dos, Ertl, B., Barakat, C., Spyropoulos, T., and Turletti, T. 2013. CEDO: Content-centric dissemination algorithm for delay-tolerant networks. Proceedings of the 16th ACM international conference on modeling, analysis & simulation of wireless and mobile systems, ACM, 377–386. https://doi.org/10.1145/2507924.2507931.

Saxena, D. and Raychoudhury, V. 2016a. Radient: Scalable, memory efficient name lookup algorithm for named data networking. Journal of Network and Computer Applications 63, 1–13. https://doi.org/10.1016/j.jnca.2015.12.009.

Saxena, D. and Raychoudhury, V. 2016b. N-FIB: Scalable, memory efficient name-based forwarding. Journal of Network and Computer Applications 76, 101–109. https://doi.org/10.1016/j.jnca.2016.09.007.

Saxena, D., Raychoudhury, V., and Becker, C. 2017. Implementation and performance evaluation of name-based forwarding schemes in V-NDN. Proceedings of the 18th international conference on distributed computing and networking, ACM, 35:1–35:4. https://doi.org/10.1145/3007748.3007766.

Saxena, D., Raychoudhury, V., Becker, C., and Suri, N. 2016a. Reliable memory efficient name forwarding in named data networking. 2016 IEEE intl conference on computational science and engineering (CSE) and IEEE intl conference on embedded and ubiquitous computing (EUC) and 15th intl symposium on distributed computing and applications for business engineering (DCABES), 48–55. https://doi.org/10.1109/CSE-EUC-DCABES.2016.160.

Saxena, D., Raychoudhury, V., Suri, N., Becker, C., and Cao, J. 2016b. Named data networking: A survey. Computer Science Review 19, 15–55. https://doi.org/10.1016/j.cosrev.2016.01.001.

Schmitt, O., Majchrzak, T.A., and Bingert, S. 2015. Experimental realization of a persistent identifier infrastructure stack for named data networking. 2015 IEEE international conference on networking, architecture and storage (NAS), ieeexplore.ieee.org, 33–38. https://doi.org/10.1109/NAS.2015.7255207.

Schneider, K.M. and Krieger, U.R. 2015. Beyond network selection: Exploiting access network heterogeneity with named data networking. Proceedings of the 2Nd ACM conference on Information-Centric networking, ACM, 137–146. https://doi.org/10.1145/2810156.2810164.

Schneider, K., Yi, C., Zhang, B., and Zhang, L. 2016. A practical congestion control scheme for named data networking. Proceedings of the 3rd ACM conference on Information-Centric networking, ACM, 21–30. https://doi.org/10.1145/2984356.2984369.

Shanbhag, S., Schwan, N., Rimac, I., and Varvello, M. 2011. SoCCeR: Services over content-centric routing. Proceedings of the ACM SIGCOMM workshop on information-centric networking, ACM, 62–67. https://doi.org/10.1145/2018584.2018600.

Shang, W., Afanasyev, A., and Zhang, L. 2016a. The design and implementation of the NDN protocol stack for RIOT-OS. 2016 IEEE globecom workshops (GC wkshps), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/GLOCOMW.2016.7849061.

Shang, W., Bannis, A., Liang, T., Wang, Z., Yu, Y., Afanasyev, A., Thompson, J., Burke, J., Zhang, B., and Zhang, L. 2016b. Named data networking of things. Internet-of-Things design and implementation (IoTDI), 2016 IEEE first international conference on, IEEE; ieeexplore.ieee.org, 117–128.

Shang, W., Bannis, A., Liang, T., Wang, Z., Yu, Y., Afanasyev, A., Thompson, J., Burke, J., Zhang, B., and Zhang, L. 2016c. Named data networking of things (invited paper). 2016 IEEE first international conference on Internet-of-Things design and implementation (IoTDI), 117–128. https://doi.org/10.1109/IoTDI.2015.44.

Shang, W., Ding, Q., Marianantoni, A., Burke, J., and Zhang, L. 2014a. Securing building management systems using named data networking. IEEE network 28, 3, 50–56. https://doi.org/10.1109/MNET.2014.6843232.

Shang, W., Thompson, J., Burke, J., and Zhang, L. 2013a. Development and experimentation with ndn-js, a javascript library for named data networking. University of California, Los Angeles, Tech. Rep. NDN-0014, Revision 1.

Shang, W., Thompson, J., Cherkaoui, M., Burkey, J., and Zhang, L. 2013b. NDN.JS: A javascript client library for named data networking. 2013 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 399–404. https://doi.org/10.1109/INFCOMW.2013.6970726.

Shang, W., Wen, Z., Ding, Q., Afanasyev, A., and Zhang, L. 2014b. Ndnfs: An ndn-friendly file system. NDN Technical Report NDN-0027, Revision 1.

Shang, W., Yu, Y., Liang, T., Zhang, B., and Zhang, L. 2015. NDN-ACE: Access control for constrained environments over named data networking. NDN Project, Tech. Rep. NDN-0036.

Shannigrahi, S., Papadopoulos, C., Yeh, E., Newman, H., Barczyk, A.J., Liu, R., Sim, A., Mughal, A., Monga, I., Vlimant, J.-R., and Wu, J. 2015. Named data networking in climate research and HEP applications. Journal of physics. Conference series 664, 5, 052033. https://doi.org/10.1088/1742-6596/664/5/052033.

Shao, Y., Tan, X., and Wu, X. 2016. Dynamic adaptive streaming in named data networking. 2016 35th chinese control conference (CCC), 6855–6860. https://doi.org/10.1109/ChiCC.2016.7554436.

Shariat, Z., Movaghar, A., and Hoseinzadeh, M. 2017. A learning automata and clustering-based routing protocol for named data networking. Telecommunication Systems 65, 1, 9–29. https://doi.org/10.1007/s11235-016-0209-8.

Sharma, P., Souza, D., Fiore, E., Gottschalk, J., and Marquis, D. 2012. A case for MANET-aware content centric networking of smartphones. 2012 IEEE international symposium on a world of wireless, mobile and multimedia networks (WoWMoM), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/WoWMoM.2012.6263714.

Shi, J., Liang, T., Wu, H., Liu, B., and Zhang, B. 2016a. NDN-NIC: Name-based filtering on network interface card. Proceedings of the 3rd ACM conference on Information-Centric networking, ACM, 40–49. https://doi.org/10.1145/2984356.2984358.

Shi, J., Piao, X., Li, L., Xun, Y., and Lei, K. 2016b. A Peer-to-Peer file sharing system over named data networking. 2016 IEEE 22nd international conference on parallel and distributed systems (ICPADS), 159–167. https://doi.org/10.1109/ICPADS.2016.0030.

Shi, J., Piao, X., Li, L., Xun, Y., and Lei, K. A Peer-to-Peer file sharing system over named data networking. https://doi.org/10.1109/ICPADS.2016.28.

Shi, W. and Afanasyev, A. 2015. RepoSync: Combined action-based and data-based synchronization model in named data network. 2015 IEEE conference on computer communications workshops (INFOCOM WKSHPS), 275–280. https://doi.org/10.1109/INFCOMW.2015.7179397.

Shilton, K. 2013. Social values in a future internet: Analyzing the named data networking protocols..

Shilton, K., Burke, J., Duan, C., Zhang, L., and Others. 2014. A world on NDN: Affordances & implications of the named data networking future internet architecture. NDN, Technical Report NDN-0018.

Shiratori, N., Uchida, N., Shibata, Y., and Izumi, S. 2013. Never die network towards disaster-resistant information communication systems. ASEAN Engineering journal Part D, 1–22.

Sifalakis, M., Kohler, B., Scherb, C., and Tschudin, C. 2014. An information centric network for computing the distribution of computations. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 137–146. https://doi.org/10.1145/2660129.2660150.

Silva, R.S. da and Zorzo, S.D. 2015. An access control mechanism to ensure privacy in named data networking using attribute-based encryption with immediate revocation of privileges. 2015 12th annual IEEE consumer communications and networking conference (CCNC), ieeexplore.ieee.org, 128–133. https://doi.org/10.1109/CCNC.2015.7157958.

Singh, A., Garg, S., Batra, S., Kumar, N., and Rodrigues, J.J.P.C. 2017. Bloom filter based optimization scheme for massive data handling in IoT environment. Future generations computer systems: FGCS. https://doi.org/10.1016/j.future.2017.12.016.

Situmorang, H., Syambas, N.R., and Juhana, T. 2016. The effect of scaling the size of topology and content stored on the named data networking. 2016 10th international conference on telecommunication systems services and applications (TSSA), 1–6. https://doi.org/10.1109/TSSA.2016.7871110.

So, W., Chung, T., Yuan, H., Oran, D., and Stapp, M. 2014. Toward terabyte-scale caching with SSD in a named data networking router. 2014 ACM/IEEE symposium on architectures for networking and communications systems (ANCS), ieeexplore.ieee.org, 241–242.

So, W., Narayanan, A., and Oran, D. 2013a. Named data networking on a router: Fast and dos-resistant forwarding with hash tables. Proceedings of the ninth ACM/IEEE symposium on architectures for networking and communications systems, IEEE Press, 215–226.

So, W., Narayanan, A., Oran, D., and Stapp, M. 2013b. Named data networking on a router: Forwarding at 20Gbps and beyond. Proceedings of the ACM SIGCOMM 2013 conference on SIGCOMM, ACM, 495–496. https://doi.org/10.1145/2486001.2491699.

Song, Y., Liu, M., and Wang, Y. 2011. Power-Aware traffic engineering with named data networking. 2011 seventh international conference on mobile ad-hoc and sensor networks, ieeexplore.ieee.org, 289–296. https://doi.org/10.1109/MSN.2011.64.

Sourlas, V., Flegkas, P., and Tassiulas, L. 2013a. Cache-aware routing in Information-Centric networks. 2013 IFIP/IEEE international symposium on integrated network management (IM 2013), ieeexplore.ieee.org, 582–588.

Sourlas, V., Gkatzikis, L., Flegkas, P., and Tassiulas, L. 2013b. Distributed cache management in Information-Centric networks. IEEE Transactions on Network and Service Management 10, 3, 286–299. https://doi.org/10.1109/TNSM.2013.052113.120382.

Sourlas, V., Psaras, I., Saino, L., and Pavlou, G. 2016. Efficient hash-routing and domain clustering techniques for Information-Centric networks. Computer Networks 103, 67–83. https://doi.org/10.1016/j.comnet.2016.04.001.

Sourlas, V., Tassiulas, L., Psaras, I., and Pavlou, G. 2015. Information resilience through user-assisted caching in disruptive Content-Centric networks. 2015 IFIP networking conference (IFIP networking), ieeexplore.ieee.org, 1–9. https://doi.org/10.1109/IFIPNetworking.2015.7145301.

Stais, C., Xylomenos, G., and Voulimeneas, A. 2015. A reliable multicast transport protocol for information-centric networks. Journal of Network and Computer Applications 50, Supplement C, 92–100. https://doi.org/10.1016/j.jnca.2014.06.006.

Stanik, J. 2009. A conversation with van jacobson. Queueing Systems. Theory and Applications 7, 1, 9. https://doi.org/10.1145/1508211.1508215.

Su, Z. and Xu, Q. 2015. Content distribution over content centric mobile social networks in 5G. IEEE Communications Magazine 53, 6, 66–72. https://doi.org/10.1109/MCOM.2015.7120047.

Syrivelis, D., Parisis, G., Trossen, D., Flegkas, P., Sourlas, V., Korakis, T., and Tassiulas, L. 2012. Pursuing a software defined information-centric network. 2012 european workshop on software defined networking, ieeexplore.ieee.org, 103–108. https://doi.org/10.1109/EWSDN.2012.20.

TalebiFard, P. and Leung, V.C.M. 2012. A content centric approach to dissemination of information in vehicular networks. Proceedings of the second ACM international symposium on design and analysis of intelligent vehicular networks and applications, ACM, 17–24. https://doi.org/10.1145/2386958.2386962.

Tan, X., Zhao, Z., Cheng, Y., and Su, J. 2016. Flow-based NDN architecture. 2016 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/ICC.2016.7511369.

Tan, Y. and Zhu, S. 2015. Efficient name lookup scheme based on hash and character trie in named data networking. 2015 12th web information system and application conference (WISA), 130–135. https://doi.org/10.1109/WISA.2015.72.

Tanaka, D. and Kawarasaki, M. 2016. Congestion control in named data networking. 2016 IEEE international symposium on local and metropolitan area networks (LANMAN), 1–6. https://doi.org/10.1109/LANMAN.2016.7548848.

Tang, J. and Quek, T.Q.S. 2016. The role of cloud computing in content-centric mobile networking. IEEE Communications Magazine 54, 8, 52–59. https://doi.org/10.1109/MCOM.2016.7537177.

Tang, J., Zhang, Z., Liu, Y., and Zhang, H. 2013. Identifying interest flooding in named data networking. 2013 IEEE international conference on green computing and communications and IEEE internet of things and IEEE cyber, physical and social computing, ieeexplore.ieee.org, 306–310. https://doi.org/10.1109/GreenCom-iThings-CPSCom.2013.68.

Tang, J., Zhou, H., Liu, Y., Zhang, H., and Gao, D. 2014. A source mobility management scheme in content-centric networking. 2014 IEEE 11th consumer communications and networking conference (CCNC), ieeexplore.ieee.org, 176–181. https://doi.org/10.1109/CCNC.2014.6866567.

Taniguchi, K., Takemasa, J., Koizumi, Y., and Hasegawa, T. 2016. A method for designing high-speed software NDN routers. Proceedings of the 3rd ACM conference on Information-Centric networking, ACM, 203–204. https://doi.org/10.1145/2984356.2985234.

Tao, M., Chen, E., Zhou, H., and Yu, W. 2016. Content-Centric sparse multicast beamforming for Cache-Enabled cloud RAN. IEEE Transactions on Wireless Communications 15, 9, 6118–6131. https://doi.org/10.1109/TWC.2016.2578922.

Tarnoi, S., Suksomboon, K., Kumwilaisak, W., and Ji, Y. 2013. Cooperative routing protocol for Content-Centric networking. 38th annual IEEE conference on local computer networks, ieeexplore.ieee.org, 699–702. https://doi.org/10.1109/LCN.2013.6761314.

Tarnoi, S., Suksomboon, K., Kumwilaisak, W., and Ji, Y. 2014. Performance of probabilistic caching and cache replacement policies for Content-Centric networks. 39th annual IEEE conference on local computer networks, ieeexplore.ieee.org, 99–106. https://doi.org/10.1109/LCN.2014.6925761.

Thar, K., Oo, T.Z., Pham, C., Ullah, S., Lee, D.H., and Hong, C.S. 2015. Efficient forwarding and popularity based caching for content centric network. 2015 international conference on information networking (ICOIN), ieeexplore.ieee.org, 330–335. https://doi.org/10.1109/ICOIN.2015.7057906.

Thar, K., Ullah, S., and Hong, C.S. 2014. Consistent hashing based cooperative caching and forwarding in content centric network. The 16th Asia-Pacific network operations and management symposium, ieeexplore.ieee.org, 1–4. https://doi.org/10.1109/APNOMS.2014.6996598.

Thompson, J. and Burke, J. 2014. NDN common client libraries. Technical Report NDN-0024, Revision 1. NDN Project.

Torres, J. and Duarte, O. 2015. CRoS-NDN: Controller-based routing strategy for named data networking. http://www.gta.ufrj.br/ftp/gta/TechReports/ToDu14a.pdf.

Torres, J., Ferraz, L., and Duarte, O. 2012. Controller-based routing scheme for named data network. Electrical Engineering Program, COPPE/UFRJ, Tech: Rep.

Torres, J.V., Alvarenga, I.D., Boutaba, R., and Duarte, O.C.M.B. 2017. An autonomous and efficient controller-based routing scheme for networking Named-Data mobility. Computer communications 103, 94–103. https://doi.org/10.1016/j.comcom.2017.02.001.

Tortelli, M., Cianci, I., Grieco, L.A., Boggia, G., and Camarda, P. 2011. A fairness analysis of content centric networks. 2011 international conference on the network of the future, ieeexplore.ieee.org, 117–121. https://doi.org/10.1109/NOF.2011.6126670.

Tortelli, M., Grieco, L.A., and Boggia, G. 2013. Performance assessment of routing strategies in named data networking. IEEE ICNP, pdfs.semanticscholar.org.

Tortelli, M., Piro, G., Grieco, L.A., and Boggia, G. 2015. On simulating bloom filters in the ndnSIM open source simulator. Simulation Modelling Practice and Theory 52, 149–163. https://doi.org/10.1016/j.simpat.2015.01.006.

Tortelli, M., Rossi, D., Boggia, G., and Grieco, L.A. 2016. ICN software tools: Survey and cross-comparison. Simulation Modelling Practice and Theory 63, 23–46. https://doi.org/10.1016/j.simpat.2016.01.015.

Tortelli, M., Rossi, D., and Leonardi, E. 2017. A hybrid methodology for the performance evaluation of internet-scale cache networks. Computer Networks 125, 146–159. https://doi.org/10.1016/j.comnet.2017.04.006.

Trossen, D. and Parisis, G. 2012. Designing and realizing an information-centric internet. IEEE Communications Magazine 50, 7, 60–67. https://doi.org/10.1109/MCOM.2012.6231280.

Trossen, D., Reed, M.J., Riihijärvi, J., Georgiades, M., Fotiou, N., and Xylomenos, G. 2015. IP over ICN—the better IP? Networks and communications (EuCNC), 2015 european conference on, IEEE; ieeexplore.ieee.org, 413–417.

Trossen, D., Sarela, M., and Sollins, K. 2010. Arguments for an information-centric internetworking architecture. SIGCOMM Comput. Commun. Rev. 40, 2, 26–33. https://doi.org/10.1145/1764873.1764878.

Trossen, D., Sathiaseelan, A., and Ott, J. 2016. Towards an information centric network architecture for universal internet access. SIGCOMM Comput. Commun. Rev. 46, 1, 44–49. https://doi.org/10.1145/2875951.2875959.

Tsudik, G., Uzun, E., and Wood, C.A. 2016. AC3N: Anonymous communication in Content-Centric networking. 2016 13th IEEE annual consumer communications networking conference (CCNC), ieeexplore.ieee.org, 988–991. https://doi.org/10.1109/CCNC.2016.7444924.

Turner, A. iTWire - inter-planetary internet expands to mars and beyond. https://web.archive.org/web/20080328060842/http://www.itwire.com/content/view/9802/1066/.

Tyson, G., Bigham, J., and Bodanese, E. 2013a. Towards an information-centric delay-tolerant network. 2013 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 387–392. https://doi.org/10.1109/INFCOMW.2013.6970723.

Tyson, G., Kaune, S., Miles, S., El-khatib, Y., Mauthe, A., and Taweel, A. 2012a. A Trace-Driven analysis of caching in Content-Centric networks. 2012 21st international conference on computer communications and networks (ICCCN), ieeexplore.ieee.org, 1–7. https://doi.org/10.1109/ICCCN.2012.6289181.

Tyson, G., Sastry, N., Cuevas, R., Rimac, I., and Mauthe, A. 2013b. A survey of mobility in information-centric networks. Communications of the ACM 56, 12, 90–98. https://doi.org/10.1145/2500501.

Tyson, G., Sastry, N., Rimac, I., Cuevas, R., and Mauthe, A. 2012b. A survey of mobility in information-centric networks: Challenges and research directions. Proceedings of the 1st ACM workshop on emerging Name-Oriented mobile networking design - architecture, algorithms, and applications, ACM, 1–6. https://doi.org/10.1145/2248361.2248363.

Ullah, S., Vasilakos, A., Chao, H.-C., and Suzuki, J. 2014. Cloud-assisted wireless body area networks. Information sciences 284, 81–83. https://doi.org/10.1016/j.ins.2014.07.050.

Uzun, E., DiBenedetto, S., Tsudik, G., and Gasti, P. 2011. Anonymous named data networking application. CCNxCon, CCN community meeting, sprout.ics.uci.edu.

Van Bogaert, F. 2014. Content-Centric networking. https://doclib.uhasselt.be/dspace/bitstream/1942/17546/1/07260742013196.pdf.

Varvello, M., Rimac, I., Lee, U., Greenwald, L., and Hilt, V. 2011. On the design of content-centric MANETs. 2011 eighth international conference on wireless On-Demand network systems and services, ieeexplore.ieee.org, 1–8. https://doi.org/10.1109/WONS.2011.5720195.

Vasilakos, A.V., Li, Z., Simon, G., and You, W. 2015. Information centric network: Research challenges and opportunities. Journal of Network and Computer Applications 52, 1–10. https://doi.org/10.1016/j.jnca.2015.02.001.

Veltri, L., Morabito, G., Salsano, S., Blefari-Melazzi, N., and Detti, A. 2012. Supporting information-centric functionality in software defined networks. 2012 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 6645–6650. https://doi.org/10.1109/ICC.2012.6364916.

Ventrella, A.V., Piro, G., and Grieco, L.A. 2017. Publish-subscribe in mobile information centric networks: Modeling and performance evaluation. Computer Networks 127, 317–339. https://doi.org/10.1016/j.comnet.2017.08.022.

Virgilio, M., Marchetto, G., and Sisto, R. 2013. PIT overload analysis in content centric networks. Proceedings of the 3rd ACM SIGCOMM workshop on information-centric networking, ACM, 67–72. https://doi.org/10.1145/2491224.2491225.

Vogt, C., Werner, M.J., and Schmidt, T.C. 2013. Content-centric user networks: WebRTC as a path to name-based publishing. 2013 21st IEEE international conference on network protocols (ICNP), ieeexplore.ieee.org, 1–3. https://doi.org/10.1109/ICNP.2013.6733652.

Wahid, A., Shah, M.A., Qureshi, F.F., Maryam, H., Iqbal, R., and Chang, V. 2017. Big data analytics for mitigating broadcast storm in vehicular content centric networks. Future generations computer systems: FGCS. https://doi.org/10.1016/j.future.2017.10.005.

Wang, H., Chen, Z., Xie, F., and Han, F. 2012a. A data structure for content cache management in Content-Centric networking. 2012 third international conference on networking and distributed computing, ieeexplore.ieee.org, 11–15. https://doi.org/10.1109/ICNDC.2012.11.

Wang, J.M., Zhang, J., and Bensaou, B. 2013a. Intra-AS cooperative caching for content-centric networks. Proceedings of the 3rd ACM SIGCOMM workshop on information-centric networking, ACM, 61–66. https://doi.org/10.1145/2491224.2491234.

Wang, J., Peng, C., Li, C., Osterweil, E., Wakikawa, R., Cheng, P.-C., and Zhang, L. 2010a. Implementing instant messaging using named data. Proceedings of the sixth asian internet engineering conference, ACM, 40–47. https://doi.org/10.1145/1930286.1930292.

Wang, J., Wakikawa, R., and Zhang, L. 2010b. DMND: Collecting data from mobiles using named data. 2010 IEEE vehicular networking conference, ieeexplore.ieee.org, 49–56. https://doi.org/10.1109/VNC.2010.5698270.

Wang, K., Chen, J., Zhou, H., and Qin, Y. 2012b. Content-centric networking: Effect of content caching on mitigating dos attack. International Journal of Computer Science Issues 9, 6, 43–52.

Wang, K., Chen, J., Zhou, H., Qin, Y., and Zhang, H. 2014a. Modeling denial-of-service against pending interest table in named data networking. International Journal of Communication Systems 27, 12, 4355–4368.

Wang, K., Zhou, H., Luo, H., Guan, J., Qin, Y., and Zhang, H. 2014b. Detecting and mitigating interest flooding attacks in content-centric network. Security and Communication Networks 7, 4, 685–699.

Wang, K., Zhou, H., Qin, Y., and Zhang, H. 2014c. Cooperative-Filter: Countering interest flooding attacks in named data networking. Soft Computing 18, 9, 1803–1813. https://doi.org/10.1007/s00500-014-1275-z.

Wang, L., Afanasyev, A., Kuntz, R., Vuyyuru, R., Wakikawa, R., and Zhang, L. 2012c. Rapid traffic information dissemination using named data. Proceedings of the 1st ACM workshop on emerging Name-Oriented mobile networking design - architecture, algorithms, and applications, ACM, 7–12. https://doi.org/10.1145/2248361.2248365.

Wang, L., Bayhan, S., Ott, J., Kangasharju, J., Sathiaseelan, A., and Crowcroft, J. 2015a. Pro-Diluvian: Understanding Scoped-Flooding for content discovery in Information-Centric networking. Proceedings of the 2Nd ACM conference on Information-Centric networking, ACM, 9–18. https://doi.org/10.1145/2810156.2810162.

Wang, L., Hoque, A., Yi, C., Alyyan, A., and Zhang, B. 2012d. OSPFN: An OSPF based routing protocol for named data networking. University of Memphis and University of Arizona, Tech. Rep.

Wang, L., Li, R., and Cui, B. 2017. ROI-Based forwarding strategy for named data delay tolerant networking. 2017 ninth international conference on ubiquitous and future networks (ICUFN), 81–86. https://doi.org/10.1109/ICUFN.2017.7993752.

Wang, L., Moiseenko, I., and Wang, D. 2016a. When video streaming meets named data networking: A case study. 2016 IEEE 18th international conference on high performance computing and communications; IEEE 14th international conference on smart city; IEEE 2nd international conference on data science and systems (HPCC/SmartCity/DSS), 166–173. https://doi.org/10.1109/HPCC-SmartCity-DSS.2016.0034.

Wang, L., Moiseenko, I., and Zhang, L. 2015b. NDNlive and NDNtube: Live and prerecorded video streaming over NDN. Tech. Rep. NDN-0031.

Wang, L., Shang, W., He, W., and Wang, D. 2016b. Consistent replication protocol for named data networking. 2016 IEEE 24th international conference on network protocols (ICNP), 1–2. https://doi.org/10.1109/ICNP.2016.7784456.

Wang, R., Peng, X., Zhang, J., and Letaief, K.B. 2016c. Mobility-aware caching for content-centric wireless networks: Modeling and methodology. IEEE Communications Magazine 54, 8, 77–83. https://doi.org/10.1109/MCOM.2016.7537180.

Wang, S., Bi, J., and Wu, J. 2013b. Collaborative caching based on hash-routing for information-centric networking. Proceedings of the ACM SIGCOMM 2013 conference on SIGCOMM, ACM, 535–536. https://doi.org/10.1145/2486001.2491727.

Wang, S., Bi, J., Wu, J., Li, Z., Zhang, W., and Yang, X. 2011a. Could in-network caching benefit information-centric networking? Proceedings of the 7th asian internet engineering conference, ACM, 112–115. https://doi.org/10.1145/2089016.2089034.

Wang, S., Bi, J., Wu, J., Yang, X., and Fan, L. 2012e. On adapting HTTP protocol to content centric networking. Proceedings of the 7th international conference on future internet technologies, ACM, 1–6. https://doi.org/10.1145/2377310.2377312.

Wang, X., Chen, M., Taleb, T., Ksentini, A., and Leung, V.C.M. 2014d. Cache in the air: Exploiting content caching and delivery techniques for 5G systems. IEEE Communications Magazine 52, 2, 131–139. https://doi.org/10.1109/MCOM.2014.6736753.

Wang, X., Lv, J., Huang, M., Li, K., Li, J., and Ren, K. 2018. Energy-efficient ICN routing mechanism with QoS support. Computer Networks 131, 38–51. https://doi.org/10.1016/j.comnet.2017.12.002.

Wang, Y., Dai, H., Jiang, J., He, K., Meng, W., and Liu, B. 2011b. Parallel name lookup for named data networking. 2011 IEEE global telecommunications conference - GLOBECOM 2011, ieeexplore.ieee.org, 1–5. https://doi.org/10.1109/GLOCOM.2011.6134161.

Wang, Y., Dai, H., Zhang, T., Meng, W., Fan, J., and Liu, B. 2013c. GPU-accelerated name lookup with component encoding. Computer Networks 57, 16, 3165–3177. https://doi.org/10.1016/j.comnet.2013.07.006.

Wang, Y., He, K., Dai, H., Meng, W., Jiang, J., Liu, B., and Chen, Y. 2012f. Scalable name lookup in NDN using effective name component encoding. 2012 IEEE 32nd international conference on distributed computing systems, ieeexplore.ieee.org, 688–697. https://doi.org/10.1109/ICDCS.2012.35.

Wang, Y., Li, Z., Tyson, G., Uhlig, S., and Xie, G. 2013d. Optimal cache allocation for Content-Centric networking. 2013 21st IEEE international conference on network protocols (ICNP), ieeexplore.ieee.org, 1–10. https://doi.org/10.1109/ICNP.2013.6733577.

Wang, Y., Li, Z., Tyson, G., Uhlig, S., and Xie, G. 2016d. Design and evaluation of the optimal cache allocation for Content-Centric networking. IEEE transactions on computers. Institute of Electrical and Electronics Engineers 65, 1, 95–107. https://doi.org/10.1109/TC.2015.2409848.

Wang, Y., Liu, H., Huang, L., and Stankovic, J. 2016e. Efficient and proactive V2V information diffusion using named data networking. 2016 IEEE/ACM 24th international symposium on quality of service (IWQoS), 1–10. https://doi.org/10.1109/IWQoS.2016.7590391.

Wang, Y., Rozhnova, N., Narayanan, A., Oran, D., and Rhee, I. 2013e. An improved hop-by-hop interest shaper for congestion control in named data networking. Proceedings of the 3rd ACM SIGCOMM workshop on information-centric networking, ACM, 55–60. https://doi.org/10.1145/2491224.2491233.

Wang, Y., Tai, D., Zhang, T., Lu, J., Xu, B., Dai, H., and Liu, B. 2013f. Greedy name lookup for named data networking. SIGMETRICS Perform. Eval. Rev. 41, 1, 359–360. https://doi.org/10.1145/2494232.2465741.

Wang, Y., Xu, B., Tai, D., Lu, J., Zhang, T., Dai, H., Zhang, B., and Liu, B. 2014e. Fast name lookup for named data networking. 2014 IEEE 22nd international symposium of quality of service (IWQoS), ieeexplore.ieee.org, 198–207. https://doi.org/10.1109/IWQoS.2014.6914320.

Wang, Z., Qu, Z., and Burke, J. 2014f. Demo overview-matryoshka: Design of NDN multiplayer online game. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 209–210. https://doi.org/10.1145/2660129.2660139.

Wählisch, M., Schmidt, T.C., and Vahlenkamp, M. 2012. Bulk of interest: Performance measurement of content-centric routing. Proceedings of the ACM SIGCOMM 2012 conference on applications, technologies, architectures, and protocols for computer communication, ACM, 99–100. https://doi.org/10.1145/2342356.2342379.

Wählisch, M., Schmidt, T.C., and Vahlenkamp, M. 2013. Backscatter from the data plane–threats to stability and security in information-centric network infrastructure. Computer Networks 57, 16, 3192–3206.

Widjaja, I. 2012. Towards a flexible resource management system for content centric networking. 2012 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 2634–2638. https://doi.org/10.1109/ICC.2012.6363698.

Wikipedia contributors. 2017. Interplanetary internet. https://en.wikipedia.org/w/index.php?title=Interplanetary_Internet&oldid=797684784.

Wilkinson, S., Boshevski, T., Brandoff, J., and Buterin, V. 2014. Storj: A Peer-to-Peer cloud storage network. http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.693.785.

Wong, W. and Nikander, P. 2010. Secure naming in information-centric networks. Proceedings of the Re-Architecting the internet workshop, ACM, 12:1–12:6. https://doi.org/10.1145/1921233.1921248.

Wood, C.A. and Uzun, E. 2014. Flexible end-to-end content security in CCN. Consumer communications and networking conference (CCNC), 2014 IEEE 11th, IEEE; ieeexplore.ieee.org, 858–865.

Wu, D., Xu, Z., Chen, B., and Zhang, Y. 2016a. What if routers are malicious? Mitigating content poisoning attack in NDN. 2016 IEEE Trustcom/BigDataSE/ISPA, ieeexplore.ieee.org, 481–488. https://doi.org/10.1109/TrustCom.2016.0100.

Wu, H., Li, J., Pan, T., and Liu, B. 2013a. A novel caching scheme for the backbone of named data networking. 2013 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 3634–3638. https://doi.org/10.1109/ICC.2013.6655117.

Wu, H., Li, J., Wang, Y., and Liu, B. 2013b. EMC: The effective Multi-Path caching scheme for named data networking. 2013 22nd international conference on computer communication and networks (ICCCN), ieeexplore.ieee.org, 1–7. https://doi.org/10.1109/ICCCN.2013.6614132.

Wu, H., Liu, B., Li, Y., Dai, H., Zhang, W., and Wang, Y. 2016b. Tube caching: An effective caching scheme in Content-Centric networking. 2016 IEEE/ACM 24th international symposium on quality of service (IWQoS), 1–2. https://doi.org/10.1109/IWQoS.2016.7590404.

Wu, H., Shi, J., Wang, Y., Wang, Y., Zhang, G., Wang, Y., Liu, B., and Zhang, B. 2017. On incremental deployment of named data networking in local area networks. 2017 ACM/IEEE symposium on architectures for networking and communications systems (ANCS), 82–94. https://doi.org/10.1109/ANCS.2017.18.

Wu, Q., Li, Z., and Xie, G. 2013c. CodingCache: Multipath-aware CCN cache with network coding. Proceedings of the 3rd ACM SIGCOMM workshop on information-centric networking, ACM, 41–42. https://doi.org/10.1145/2491224.2491240.

Wu, Q., Li, Z., Zhou, J., Jiang, H., Hu, Z., Liu, Y., and Xie, G. 2014a. SOFIA: Toward service-oriented information centric networking. IEEE network 28, 3, 12–18. https://doi.org/10.1109/MNET.2014.6843227.

Wu, T.-Y., Lee, W.-T., Duan, C.-Y., and Wu, Y.-W. 2014b. Data lifetime enhancement for improving QoS in NDN. Procedia computer science 32, 69–76. https://doi.org/10.1016/j.procs.2014.05.399.

Xie, M., Widjaja, I., and Wang, H. 2012. Enhancing cache robustness for content-centric networking. 2012 proceedings IEEE INFOCOM, ieeexplore.ieee.org, 2426–2434. https://doi.org/10.1109/INFCOM.2012.6195632.

Xie, R., Wen, Y., Jia, X., and Xie, H. 2015. Supporting seamless virtual machine migration via named data networking in cloud data center. IEEE Transactions on Parallel and Distributed Systems 26, 12, 3485–3497. https://doi.org/10.1109/TPDS.2014.2377119.

Xu, H., Chen, Z., Chen, R., and Cao, J. 2012. Live streaming with content centric networking. 2012 third international conference on networking and distributed computing, ieeexplore.ieee.org, 1–5. https://doi.org/10.1109/ICNDC.2012.9.

Xu, M., Ming, Z., Xia, C., Ji, J., Li, D., and Wang, D. 2015. SIONA: A service and information oriented network architecture. Journal of Network and Computer Applications 50, 80–91. https://doi.org/10.1016/j.jnca.2014.06.010.

Xu, Y., Li, Y., Lin, T., Wang, Z., Niu, W., Tang, H., and Ci, S. 2014. A novel cache size optimization scheme based on manifold learning in content centric networking. Journal of Network and Computer Applications 37, 273–281. https://doi.org/10.1016/j.jnca.2013.03.002.

Xu, Y., Li, Y., Lin, T., Zhang, G., Wang, Z., and Ci, S. 2013. A dominating-set-based collaborative caching with request routing in content centric networking. 2013 IEEE international conference on communications (ICC), ieeexplore.ieee.org, 3624–3628. https://doi.org/10.1109/ICC.2013.6655115.

Xylomenos, G., Ververidis, C.N., Siris, V.A., Fotiou, N., Tsilopoulos, C., Vasilakos, X., Katsaros, K.V., and Polyzos, G.C. 2014. A survey of Information-Centric networking research. IEEE Communications Surveys & Tutorials 16, 2, 1024–1049. https://doi.org/10.1109/SURV.2013.070813.00063.

Yan, H., Gao, D., and Su, W. 2016. A hierarchical cluster-based caching for named data networking. 2016 IEEE/CIC international conference on communications in china (ICCC), 1–6. https://doi.org/10.1109/ICCChina.2016.7636721.

Yan, H., Gao, D., Su, W., Foh, C.H., Zhang, H., and Vasilakos, A.V. 2017. Caching strategy based on hierarchical cluster for named data networking. IEEE Access 5, 8433–8443. https://doi.org/10.1109/ACCESS.2017.2694045.

Yan, Z., Zeadally, S., and Park, Y.J. 2014. A novel vehicular information network architecture based on named data networking (NDN). IEEE Internet of Things Journal 1, 6, 525–532. https://doi.org/10.1109/JIOT.2014.2354294.

Yao, J., Yin, B., and Lu, X. 2016. A novel joint adaptive forwarding and resource allocation strategy for named data networking based on SMDP. 2016 12th IEEE international conference on control and automation (ICCA), 956–961. https://doi.org/10.1109/ICCA.2016.7505403.

Yao, J., Yin, B., Tan, X., and Jiang, X. 2017. A POMDP framework for forwarding mechanism in named data networking. Computer Networks 112, 167–175. https://doi.org/10.1016/j.comnet.2016.11.005.

Yeh, E., Ho, T., Cui, Y., Burd, M., Liu, R., and Leong, D. 2014. VIP: A framework for joint dynamic forwarding and caching in named data networks. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 117–126. https://doi.org/10.1145/2660129.2660151.

Yeh, E., Ho, T., Cui, Y., Burd, M., Liu, R., and Leong, D. 2015. VIP: Joint traffic engineering and caching in named data networks. 2015 international conference on computing, networking and communications (ICNC), 695–699. https://doi.org/10.1109/ICCNC.2015.7069430.

Yeh, E., Ho, T., Cui, Y., Liu, R., Burd, M., and Leong, D. 2013. Forwarding, caching and congestion control in named data networks. arXiv preprint arXiv:1310. 5569.

Yi, C., Abraham, J., Afanasyev, A., Wang, L., Zhang, B., and Zhang, L. 2014. On the role of routing in named data networking. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 27–36. https://doi.org/10.1145/2660129.2660140.

Yi, C., Afanasyev, A., Moiseenko, I., Wang, L., Zhang, B., and Zhang, L. 2013. A case for stateful forwarding plane. Computer communications 36, 7, 779–791. https://doi.org/10.1016/j.comcom.2013.01.005.

Yi, C., Afanasyev, A., Wang, L., Zhang, B., and Zhang, L. 2012. Adaptive forwarding in named data networking. SIGCOMM Comput. Commun. Rev. 42, 3, 62–67. https://doi.org/10.1145/2317307.2317319.

You, W., Mathieu, B., Truong, P., Peltier, J.F., and Simon, G. 2012. Realistic storage of pending requests in Content-Centric network routers. 2012 1st IEEE international conference on communications in china (ICCC), ieeexplore.ieee.org, 120–125. https://doi.org/10.1109/ICCChina.2012.6356864.

Yu, W. and Pao, D. 2016. Hardware accelerator to speed up packet processing in NDN router. Computer communications 91-92, 109–119. https://doi.org/10.1016/j.comcom.2016.06.004.

Yu, Y. 2015. Public key management in named data networking. NDN, Univ. California, Los Angeles, CA, USA, Tech. Rep. NDN-0029.

Yu, Y., Afanasyev, A., Clark, D., Claffy, K., Jacobson, V., and Zhang, L. 2015. Schematizing trust in named data networking. Proceedings of the 2nd ACM conference on Information-Centric networking, ACM, 177–186. https://doi.org/10.1145/2810156.2810170.

Yu, Y., Afanasyev, A., Seedorf, J., Zhang, Z., and Zhang, L. 2017. NDN DeLorean: An authentication system for data archives in named data networking. Proceedings of the 4th ACM conference on Information-Centric networking, ACM, 11–21. https://doi.org/10.1145/3125719.3125724.

Yu, Y., Afanasyev, A., and Zhang, L. 34AD. Name-based access control. Project, Technical Report NDN-0034.

Yu, Y., Afanasyev, A., Zhu, Z., and Zhang, L. 2014. An endorsement-based key management system for decentralized NDN chat application. University of California, Los Angeles, Tech. Rep. NDN-0023.

Yu, Y.T., Dilmaghani, R.B., Calo, S., Sanadidi, M.Y., and Gerla, M. 2013. Interest propagation in named data manets. 2013 international conference on computing, networking and communications (ICNC), ieeexplore.ieee.org, 1118–1122. https://doi.org/10.1109/ICCNC.2013.6504249.

Yuan, H. and Crowley, P. 2011. Performance measurement of Name-Centric content distribution methods. Proceedings of the 2011 ACM/IEEE seventh symposium on architectures for networking and communications systems, IEEE Computer Society, 223–224. https://doi.org/10.1109/ANCS.2011.43.

Yuan, H., Crowley, P., and Song, T. 2017. Enhancing scalable Name-Based forwarding. 2017 ACM/IEEE symposium on architectures for networking and communications systems (ANCS), 60–69. https://doi.org/10.1109/ANCS.2017.16.

Yuan, H., Song, T., and Crowley, P. 2012. Scalable NDN forwarding: Concepts, issues and principles. 2012 21st international conference on computer communications and networks (ICCCN), ieeexplore.ieee.org, 1–9. https://doi.org/10.1109/ICCCN.2012.6289305.

Zahariadis, T.B., Daras, P., Bouwen, J., Niebert, N., Griffin, D., Álvarez, F., and Camarillo, G. 2010. Towards a Content-Centric internet. Future internet assembly, iti.gr, 227–236.

Zalak, P., Aemi, K., Raval, G., Ukani, V., and Valiveti, S. 2017. Open issues in named data networking – a survey. Information and communication technology for intelligent systems (ICTIS 2017) - volume 1, Springer, Cham, 285–292. https://doi.org/10.1007/978-3-319-63673-3\_34.

Zeng, Y. and Hong, X. 2011. A caching strategy in mobile ad hoc named data network. 2011 6th international ICST conference on communications and networking in china (CHINACOM), ieeexplore.ieee.org, 805–809. https://doi.org/10.1109/ChinaCom.2011.6158264.

Zeynalvand, L., Gharib, M., and Movaghar, A. 2015. Decentralized social networking using Named-Data. Computer networks, Springer, Cham, 421–430. https://doi.org/10.1007/978-3-319-19419-6\_40.

Zhang, F., Reznik, A., Liu, H., Xu, C., Zhang, Y., and Seskar, I. 2013a. Using ORBIT for evaluating wireless content-centric network transport. Proceedings of the 8th ACM international workshop on wireless network testbeds, experimental evaluation & characterization, ACM, 103–104. https://doi.org/10.1145/2505469.2508457.

Zhang, F., Zhang, Y., Reznik, A., Liu, H., Qian, C., and Xu, C. 2014a. A transport protocol for content-centric networking with explicit congestion control. 2014 23rd international conference on computer communication and networks (ICCCN), ieeexplore.ieee.org, 1–8. https://doi.org/10.1109/ICCCN.2014.6911765.

Zhang, G., Li, Y., and Lin, T. 2013b. Caching in information centric networking: A survey. Computer Networks 57, 16, 3128–3141. https://doi.org/10.1016/j.comnet.2013.07.007.

Zhang, G., Qi, D., and Gao, Q. 2016a. Architectural mechanisms for anycast provision in named data networking. 2016 22nd Asia-Pacific conference on communications (APCC), 567–572. https://doi.org/10.1109/APCC.2016.7581491.

Zhang, H., Wen, Y., Xie, H., and Yu, N. 2013c. Distributed hash table: Theory, platforms and applications. Springer. https://doi.org/10.1007/978-1-4614-9008-1.

Zhang, H., Xie, R., Zhu, S., Huang, T., and Liu, Y. 2016b. DENA: An intelligent content discovery system used in named data networking. IEEE Access 4, 9093–9107. https://doi.org/10.1109/ACCESS.2016.2638474.

Zhang, L. 2011. Evolving internet into the future via named data networking. Presentation, APRICOT-APAN.

Zhang, L., Afanasyev, A., Burke, J., Jacobson, V., Claffy, K., Crowley, P., Papadopoulos, C., Wang, L., and Zhang, B. 2014b. Named data networking. ACM SIGCOMM Computer Communication Review 44, 3, 66–73. https://doi.org/10.1145/2656877.2656887.

Zhang, L., Estrin, D., Burke, J., Jacobson, V., Thornton, J.D., Smetters, D.K., Zhang, B., Tsudik, G., Massey, D., and Papadopoulos, C. 2010. Named data networking (NDN) project..

Zhang, M., Lehman, V., and Wang, L. 2016c. Partialsync: Efficient synchronization of a partial namespace in ndn. Technical report, Technical Report NDN-0039, NDN.

Zhang, M., Lehman, V., and Wang, L. 2017a. Scalable name-based data synchronization for named data networking. IEEE INFOCOM 2017 - IEEE conference on computer communications, 1–9. https://doi.org/10.1109/INFOCOM.2017.8057193.

Zhang, M., Luo, H., and Zhang, H. 2015. A survey of caching mechanisms in Information-Centric networking. IEEE Communications Surveys Tutorials 17, 3, 1473–1499. https://doi.org/10.1109/COMST.2015.2420097.

Zhang, X., Chang, K., Xiong, H., Wen, Y., Shi, G., and Wang, G. 2011. Towards name-based trust and security for content-centric network. 2011 19th IEEE international conference on network protocols, ieeexplore.ieee.org, 1–6. https://doi.org/10.1109/ICNP.2011.6089053.

Zhang, Y., Afanasyev, A., Burke, J., and Zhang, L. 2016d. A survey of mobility support in named data networking. 2016 IEEE conference on computer communications workshops (INFOCOM WKSHPS), ieeexplore.ieee.org, 83–88. https://doi.org/10.1109/INFCOMW.2016.7562050.

Zhang, Y., Zhang, H., and Zhang, L. 2014c. Kite: A mobility support scheme for NDN. Proceedings of the 1st ACM conference on Information-Centric networking, ACM, 179–180. https://doi.org/10.1145/2660129.2660159.

Zhang, Z., Afanasyev, A., and Zhang, L. 2017b. NDNCERT: Universal usable trust management for NDN. Proceedings of the 4th ACM conference on Information-Centric networking, ACM, 178–179. https://doi.org/10.1145/3125719.3132090.

Zhang, Z., Ma, H., Xue, Y., and Liu, L. 2017c. Fair video caching for named data networking. 2017 IEEE international conference on communications (ICC), 1–6. https://doi.org/10.1109/ICC.2017.7997024.

Zhang, Z., Yu, Y., Afanasyev, A., and Zhang, L. 2017d. NDN certificate management protocol (NDNCERT). named-data.net.

Zhou, Z., Tan, X., Li, H., Zhao, Z., and Ma, D. 2014. MobiNDN: A mobility support architecture for NDN. Proceedings of the 33rd chinese control conference, ieeexplore.ieee.org, 5515–5520. https://doi.org/10.1109/ChiCC.2014.6895882.

Zhu, Z. and Afanasyev, A. 2013. Let’s ChronoSync: Decentralized dataset state synchronization in named data networking. 2013 21st IEEE international conference on network protocols (ICNP), ieeexplore.ieee.org, 1–10. https://doi.org/10.1109/ICNP.2013.6733578.

Zhu, Z., Afanasyev, A., and Zhang, L. 2013. A new perspective on mobility support. Named-Data Networking Project, Tech. Rep.

Zhu, Z., Bian, C., Afanasyev, A., Jacobson, V., and Zhang, L. 2012. Chronos: Serverless multi-user chat over NDN. University of California, Los Angeles, Tech. Rep. NDN-0008, 1–12.

Zhu, Z., Burke, J., Zhang, L., Gasti, P., Lu, Y., and Jacobson, V. 2011a. A new approach to securing audio conference tools. Proceedings of the 7th asian internet engineering conference, ACM, 120–123. https://doi.org/10.1145/2089016.2089036.

Zhu, Z., Wang, S., Yang, X., Jacobson, V., and Zhang, L. 2011b. ACT: Audio conference tool over named data networking. Proceedings of the ACM SIGCOMM workshop on information-centric networking, ACM, 68–73. https://doi.org/10.1145/2018584.2018601.