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A minimum disclosure approach to authentication and privacy in RFID systems

机译:RFID系统中用于身份验证和隐私的最小公开方法

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In this paper we present a novel approach to authentication and privacy in RFID systems based on the minimum disclosure property and in conformance to EPC Class-1 Gen-2 specifications. We present two security schemes that are suitable for both fixed reader and mobile/wireless reader environments, the mutual authentication and the collaborative authentication schemes respectively. Both schemes are suited to the computational constraints of EPC Class-1 Gen-2 passive RFID tags as only the cyclic redundancy check (CRC) and pseudo random number generator (PRNG) functions that passive RFID tags are capable of are used. Detailed security analysis of both our schemes show that they offer robust security properties in terms of tag anonymity, tag untraceability and reader privacy while at the same time being robust to replay, tag impersonation and desynchronisation attacks. Simulations results are also presented to study the scalability of the schemes and its impact on authentication delay. In addition, Yeh et al. (2010) [20] proposed a security scheme for EPC Class-1 Gen-2 based mobile/wireless RFID systems. We show that this scheme has a security vulnerability and is not suitable for mobile/wireless RFID systems.
机译:在本文中,我们提出了一种基于最小公开属性并符合EPC Class-1 Gen-2规范的RFID系统中的身份验证和隐私保护的新方法。我们提出了两种适用于固定阅读器和移动/无线阅读器环境的安全方案,分别是相互认证和协作认证方案。两种方案都适合于EPC Class 1 Gen-2无源RFID标签的计算约束,因为仅使用了无源RFID标签具有的循环冗余校验(CRC)和伪随机数发生器(PRNG)功能。我们对这两种方案的详细安全性分析表明,它们在标签匿名性,标签不可追溯性和读取器隐私性方面均提供了强大的安全性,同时还具有强大的重播,标签模拟和去同步攻击能力。仿真结果也被提出来研究该方案的可扩展性及其对认证延迟的影响。此外,Yeh等。 (2010)[20]提出了一种基于EPC Class-1 Gen-2的移动/无线RFID系统的安全方案。我们证明此方案存在安全漏洞,不适合移动/无线RFID系统。

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