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A secure and private RFID authentication protocol based on quadratic residue

机译:基于二次残差的安全私有RFID认证协议

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Radio Frequency IDentification based systems are getting pervasively deployed in many real-life applications in various settings for identification and authentication of remote objects. However, the messages that are transmitted over a insecure channel, are vulnerable to security and privacy concerns such as data privacy, location privacy of tag owner and etc. Recently, Yeh et al.'s proposed a RFID authentication protocol based on quadratic residue which is claimed to provide location privacy and prevent possible attacks. In this paper, we formally analyzed the protocol and we proved that the protocol provides destructive privacy according to Vaudenay privacy model. Moreover, we proposed a unilateral authentication protocol and we prove that our protocol satisfies higher privacy level such as narrow strong privacy. Besides, we proposed an enhanced version of our proposed protocol, which has same privacy level as Yeh at al protocol, but has reader authentication against stronger adversaries. Furthermore, the enhanced version of our protocol uses smaller number of cryptographic operations when compared to Yeh at al protocol and it is also cost efficient at the server and tag side and requires O(1) complexity to identify a RFID tag.
机译:基于射频识别的系统已广泛部署在许多实际应用中的各种设置中,以用于远程对象的识别和认证。然而,在不安全的信道上传输的消息容易受到安全和隐私问题的关注,例如数据隐私,标签所有者的位置隐私等。最近,Yeh等人提出了一种基于二次残差的RFID身份验证协议,据称提供位置隐私并防止可能的攻击。在本文中,我们对协议进行了正式分析,并证明该协议根据Vaudenay隐私模型提供了破坏性的隐私。此外,我们提出了单方面的身份验证协议,并证明我们的协议满足较高的隐私级别,例如狭窄的强隐私。此外,我们提出了所提议协议的增强版本,该协议的隐私级别与Yeh在其他协议中相同,但是具有针对更强大对手的读者身份验证。此外,与协议中的Yeh相比,我们协议的增强版本使用的加密操作次数更少,并且在服务器和标签端也具有成本效益,并且需要O(1)复杂度来识别RFID标签。

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