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IP組播不可否認(rèn)數(shù)據(jù)源認(rèn)證研究進(jìn)展

張海波 周賢偉 宋存義

張海波, 周賢偉, 宋存義. IP組播不可否認(rèn)數(shù)據(jù)源認(rèn)證研究進(jìn)展[J]. 電子與信息學(xué)報(bào), 2006, 28(11): 2205-2208.
引用本文: 張海波, 周賢偉, 宋存義. IP組播不可否認(rèn)數(shù)據(jù)源認(rèn)證研究進(jìn)展[J]. 電子與信息學(xué)報(bào), 2006, 28(11): 2205-2208.
Zhang Hai-bo, Zhou Xian-wei, Song Cun-yi. Progess of the Research on IP Multicast Data Origin Authentication with Non-repudiation[J]. Journal of Electronics & Information Technology, 2006, 28(11): 2205-2208.
Citation: Zhang Hai-bo, Zhou Xian-wei, Song Cun-yi. Progess of the Research on IP Multicast Data Origin Authentication with Non-repudiation[J]. Journal of Electronics & Information Technology, 2006, 28(11): 2205-2208.

IP組播不可否認(rèn)數(shù)據(jù)源認(rèn)證研究進(jìn)展

Progess of the Research on IP Multicast Data Origin Authentication with Non-repudiation

  • 摘要: 數(shù)據(jù)源認(rèn)證是組播安全體系中重要的一部分,數(shù)據(jù)源認(rèn)證可以分為可否認(rèn)的和不可否認(rèn)的兩種。該文按照協(xié)議分類分別概述了幾個(gè)具有代表性的不可否認(rèn)數(shù)據(jù)源認(rèn)證協(xié)議,并對(duì)每一個(gè)協(xié)議的優(yōu)缺點(diǎn)和存在問(wèn)題進(jìn)行了討論。對(duì)目前IP組播不可否認(rèn)數(shù)據(jù)源認(rèn)證協(xié)議進(jìn)行了總結(jié),并討論了不可否認(rèn)數(shù)據(jù)源認(rèn)證未來(lái)的研究方向和還需要解決的問(wèn)題。
  • [1] Deering S E, Cheriton D R. Host groups: A multicast extension to the Internet protocol. (RFC966), Dec,1985. [2] 趙膺,宋佳興,徐萬(wàn)鴻,劉衛(wèi)東. 安全組播綜述[J]. 小型微型計(jì)算機(jī)系統(tǒng),2003, 24(10): 1873-1877. [3] Hardjono T, Tsudik G. IP multicast security: Issues and directions. Annales de Telecom, July-August 2000: 324-340. [4] Gennaro R, Rohatgi P. How to sign digital streams[J].Information and Computation.2001,165(1):100-116 [5] Gennaro R, Rohatgi P. How to sign digital streams. Proceedings of the 17th Annual International Cryptology Conference, Advances in Cryptology - Crypto97, 17-21 August 1997, vol. 1294 of Lecture notes in computer science, Springer: 180-197. [6] Perrig A, Canetti R, Tygar J D, Song D. Efficient authentication and signing of multicast streams over lossy channels. IEEE Symposium on Security and Privacy, May, 2000: 56-73. [7] Miner S, Staddon J. Graph-based authentication of digital streams. IEEE Symposium on Security and Privacy, Oakland, California, USA, May, 2001: 232-246. Golle P, Modadugu N. Authenticating streamed data in the presence of random packet loss. In Proceedings of the Symposium on Network and Distributed Systems Security (NDSS 2001), the Internet Society, San Diego, USA, Feb, 2001: 13-22. [8] Wong C K, Lam S S. Digital signatures for flows and multicasts. in Progress of IEEE Internet Conference on Network Protocols, AICNP98, Austin, Texas, USA. Oct. 1998: 198-209. [9] Wong C K, Lam S S. Digital signatures for flows and multicasts[J].IEEE/ACM Transactions on Networking.1999, 7(4):502- [10] Park J M, Chong E K P, Siegel H J. Efficient multicast packet authentication using signature amortization. IEEE Symposium on Security and Privacy, Oakland, California, USA, May, 2002: 227-240. [11] Park J M, Chong E K P, Siegel H J. Efficient multicast stream authentication using erasure codes[J].ACM Transactions on Information and System Security.2003, 6(2):258-285 [12] Rabin M O. Efficient dispersal of information for security, loadbalancing, and fault tolerance. Journal of Association for Computing Machinery, 1989, 36(2): 335-348. [13] Even S, Goldreich O, Micali S. On-line/off-line digital signatures[J].Advances in CryptologyCRYPTO '89, Lecture Notes in Computer Science, (G. Brassard, ed.), Springer Verlag.1990, vol. 435:263-275 [14] Even S, Goldreich O, Micali S. On-line/off-line digital signatures[J].Journal of Cryptology.1996, 9(1):35-67
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  • 收稿日期:  2005-04-07
  • 修回日期:  2005-12-30
  • 刊出日期:  2006-11-19

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