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基于码分多址和防碰撞功能 的RFID安全认证协议

  • 丁治国 ,
  • 朱学永 ,
  • 雷迎科
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  • 解放军电子工程学院网络管理中心,合肥 230037

收稿日期: 2009-10-13

  修回日期: 2009-12-21

  网络出版日期: 2010-05-15

An RFID authentication protocol based on CDMA and anti-collision function

  • DING Zhi-Guo ,
  • ZHU Xue-Yong ,
  • LEI Ying-Ke
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  • Center of Network, Electronic Engineering Institute of PLA, Hefei 230037,China

Received date: 2009-10-13

  Revised date: 2009-12-21

  Online published: 2010-05-15

摘要

利用码分多址技术的保密性、抗干扰性和多址通信能力,结合认证密钥和Hash函数,设计了一种适用于RFID系统且具有防碰撞功能的安全认证协议. 理论和分析表明:与常用的安全认证协议相比,新协议在保证一定复杂度基础上,不仅能有效地解决标签的碰撞问题,而且可抵抗包括重传、跟踪、阻断和篡改在内的多种攻击手段,尤其针对来自系统内安全威胁,具有一定的安全性和实用性.

本文引用格式

丁治国 , 朱学永 , 雷迎科 . 基于码分多址和防碰撞功能 的RFID安全认证协议[J]. 中国科学院大学学报, 2010 , 27(3) : 397 -403 . DOI: 10.7523/j.issn.2095-6134.2010.3.014

Abstract

In this paper, a novel authentication protocol based on CDMA and Hash function is presented. The new protocol can tackle with the problem of tag collisions and resist several possible attacks, including reply, tracking, blocking, proofing, and inner attacks. Both theory and analysis show that the new protocol, compared with other authentication protocols, improves the security of RFID systems effectively and does not increase the complexity of protocol.

参考文献


[1] Finkenzeller K. RFID handbook: fundamentals and applications in contactless smart cards and identification . John Wiley & Sons, 2003.

[2] Juels A,Molnar D,Wagner D. Security and privacy issues in E-passports //First International Conference on Security and Privacy for Emerging Areas in Communication Networks. Greece: Athens,2005:37-47.

[3] Sarma S, Weis S, Engels D. Radio-frequency identification: secure risks and challenges
[J]. RSA Laboratories Cryptobytes, 2003, 6(1): 2-9.

[4] Ohkubo M, Suzuki K, Kinoshita S. Hash-chain based forward secure privacy protection scheme for low-cost RFID //Proceedings of the 2004 Symposium on Cryptography and Information Security. Sendai, 2004:719-724.

[5] Rhee K, Kwak J, Kim S. Challenge-response based RFID authentication protocol for distributed database environment //2nd International Conference on Security in Pervasive Computing. Germany: Boppard, 2005: 70-84.

[6] Chen H Y. SASI: A new ultralightweight RFID authentication protocol providing strong authentication and strong integrity
[J]. IEEE Transactions on Dependable and Secure Computing, 2007,4(4):337-340.

[7] Ha J, Kim H, Park J, et al. HGLAP-hierarchical group-index based lightweight authentication protocol for distributed RFID system //IFIP International Conference Embedded and Ubiquitous Computing. TAIWAN:Taipei, 2007:557-567.

[8] Lee C, Cho H, Kim S W. An adaptive RFID anti-collision algorithm based on dynamic framed ALOHA
[J]. IEICE Transactions on Communication, 2008,E918B(2): 641- 645.

[9] Eom J B, Lee T J, Rietman R, et al. An efficient framed-slotted ALOHA algorithm with pilot frame and binary selection for anti-collision of RFID tags
[J]. IEEE Communication Letters,2008, 12(1): 861-863.

[10] Myung J, Lee W, Srivastava J,et al. Tag-splitting: adaptive collision arbitration protocols for RFID tag identification
[J]. IEEE Transactions on Parallel and Distributed Systems, 2007,18(5): 1-13.

[11] Liang B, Hu A Q, Qin Z Y. A novel design for RFID anti-collision technique
[J]. Journal of Electronics & Information Technology, 2007, 29(9):2158-2160(in Chinese). 梁 彪,胡爱群,秦中元.一种新的RFID防碰撞算法设计
[J].电子与信息学报, 2007,29(9):2158-2160.

[12] William S. Cryptography and network security principles and practices
[M]. 北京:电子工业出版社,2006.

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