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| On the Complementary Binary Future Internet Architecture |
| YANG Peng, LI You-ping
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| a. School of Computer Science and Engineering; b. Future Network Research Center, Southeast University, Nanjing 211189, China |
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Abstract By analyzing the mismatching between current Internet architecture and Internet’s mainstream application paradigm, a complementary binary future Internet architecture is proposed in this paper, which consists of a primary structure (the current Internet architecture) and a secondary structure (the broadcast-storage network). This new Internet architecture can not only maintain some irreplaceable advantages and features of the existing Internet architecture, but also bring unprecedented physical revolution for the future Internet.
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Received: 24 July 2013
Published: 22 June 2026
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[1] Kleinrock L. Information flow in large communication nets[D]. Cambridge:Massachusetts Institute of Technology, 1961. [2] Saltzer J H, Reed D P, Clark D D. End-to-end arguments in system design[J]. ACM Transactions on Computer Systems, 1984, 2(4):277-288. [3] Clark D, Tennenhouse D. Architectural considerations for a new generation of protocols[J]. Computer Communications Review. 1990, 20(4):200-208. [4] Blumenthal M S, Clark D D. Rethinking the design of the internet:the end to end arguments vs. the brave new world[J]. ACM Transactions on Internet Technology, 2001,1(1):70-109. [5] Clark D D, Wroclawski J, Sollins K K, et al. Tussle in cyberspace:defining tomorrow′s internet[J].IEEE/ACM Tran-sactions on Networking,2005,13(3):462-475. [6] Zhang L, Estrin D, Burke J, et al. Named data networking (NDN) project, NDN-0001[EB/OL].[2010-10-31]. http://named-data.net/ndn-proj.pdf. [7] Ahlgren B, Dannewitz C, Imbrenda C, et al. A survey of information-centric networking[J]. IEEE Communications Magazine, 2012, 50(7):26-36. [8] Rexford J, Dovrolis C. Future internet architecture:clean-slate versus evolutionary research[J]. Communications of the ACM, 2010, 53(9):36-40. [9] Pathan I A M K, Buyya R. A taxonomy and survey of CDNs, technical report, GRIDS-TR-2007-4[R]. Australia:The University of Melbourne, 2007. [10] Androutsellis-Theotokis S, Spinellis D. A survey of peer-to-peer content distribution technologies[J]. ACM Computing Surveys, 2004, 36(4):335-371. [11] Gritter M, Cheriton D R. An architecture for content routing support in the internet[C]//The 3rd conference on USENIX Symposium on Internet Technologies and Systems,San Francisco, CA, 2001:37-48. [12] Koponen T, Chawla M, Chun B-G, et al. A data-oriented (and beyond) network architecture[C]//ACM SIGCOMM’07.Kyoto, 2007. [13] Welcome to the PSRP project homepage[EB/OL].[2013-03-06].http://www.psirp.org, 2010. [14] Ahlgren B, Ambrosio M D, Axelsson E, et al. D-3.1 (D-B.1) The network of information:architecture and applications[DB/OL].[2011-07-31]. http://www.sail-project.eu/wp-content/uploads/2011/08/SAIL_DB1_v1_0_final-Public.pdf. [15] Jacobson V, Smetters D K, Thornton J D, et al. Networking named content[C]//ACM CoNEXT’09, New York, USA, 2009:1-12. [16] Anand A, Dogar F, Han D, et al. XIA:an architecture for an evolvable and trustworthy Internet[C]//ACM Hotnets-X. Cambridge,MA, USA, 2011. [17] Mobility first future internet architecture project vision[EB/OL].[2013-03-06]. http://mobilityfirst.winlab.rutgers.edu/Vision.html. [18] Xie G G, Sun Y, Zhang Y J, et al. Service-oriented future internet architecture (SOFIA)[C]//IEEE Infocom/Poster. Shanghai, China, 2011. [19] 100 x 100 clean slate project[EB/OL].[2013-03-06]. http://www.eecs.berkeley.edu/Research/Projects/Data/274.html. [20] Albert R, Barabási A-L. Statistical mechanics of complex networks[J]. Reviews of Modern Physics, 2002, 74:47-97. [21] Wang X F, Chen G. Complex networks:small-world, scale-free, and beyond[J]. IEEE Circuits and Systems Magazine, 2003, 3(1):6-20. [22] Willinger W, Doyle J. Robustness and the Internet:design and evolution[EB/OL].[2013-01-10]. http://netlab.caltech.edu/pub/papers/part1_vers4.pdf. |
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