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An Efficient Lightweight RFID Authentication Protocol with Strong Trajectory Privacy Protection

机译:具有强大轨迹隐私保护的高效轻量级RFID认证协议

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摘要

Low-cost tags are widely used, but have very limited storage space and computing power. In this paper, we propose an efficent lightweight radio-frequency identification (RFID) authentication protocol with strong trajectory privacy protection to balance the security and availability of RFID systems. In this protocol, tags only adopt pseudo-random number generator and XOR operation. In the authentication process, tags always use pseudonyms to prevent the exposure of sensitive messages, the pseudonyms and secret numbers of the tags are synchronized with the background server all the time. The analysis shows that the protocol can solve security issues such as desynchronization attack, man in the middle attack, forward security, replay attack, clone and so on effectively, and meet the requirements of low-cost tags. The trajectory privacy model of RFID systems is also used to prove the strong trajectory privacy and security of the protocol. This protocol has a better performance in terms of storage cost, computation cost and communication cost, and the search efficiency of the background server comparing to the existing relevant research results.
机译:低成本标签被广泛使用,但存储空间和计算能力非常有限。在本文中,我们提出了一种有效的轻量级射频识别(RFID)认证协议,具有强大的轨迹隐私保护,以平衡RFID系统的安全性和可用性。在本协议中,标签仅采用伪随机数发生器和XOR操作。在身份验证过程中,标签始终使用假名来防止曝光敏感消息,标记的假名和秘密编号一直与后台服务器同步。该分析表明,该协议可以解决安全问题,如去同步攻击,中间攻击,转发安全,重播攻击,克隆等的人有效,并满足低成本标签的要求。 RFID系统的轨迹隐私模型也用于证明协议的强大轨迹隐私和安全性。该协议在储存成本,计算成本和通信成本方面具有更好的性能,以及与现有相关研究结果相比的背景服务器的搜索效率。

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