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Preventing Identity Attacks in RFID Backscatter Communication Systems: A Physical-layer Approach

机译:防止RFID背向散射通信系统中的身份攻击:物理层方法

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This work considers identity attack on a radio-frequency identification (RFID)-based backscatter communication system. Specifically, we consider a singlereader, single-tag RFID system whereby the reader and the tag undergo two-way signaling which enables the reader to extract the tag ID in order to authenticate the legitimate tag (L-tag). We then consider a scenario whereby a malicious tag (M-tag)—having the same ID as the Ltag programmed in its memory by a wizard—attempts to deceive the reader by pretending to be the L-tag. To this end, we counter the identity attack by exploiting the non-reciprocity of the end-to-end channel (i.e., the residual channel) between the reader and the tag as the fingerprint of the tag. The passive nature of the tag(s) (and thus, lack of any computational platform at the tag) implies that the proposed light-weight physical-layer authentication method is implemented at the reader. To be concrete, in our proposed scheme, the reader acquires the raw data via two-way (challenge-response) message exchange mechanism, does least-squares estimation to extract the fingerprint, and does binary hypothesis testing to do authentication. We also provide closed-form expressions for the two error probabilities of interest (i.e., false alarm and missed detection). Simulation results attest to the efficacy of the proposed method.
机译:这项工作考虑了基于射频识别(RFID)的反向散射通信系统的身份攻击。具体而言,我们考虑一个Singlereader,单标RFID系统,其中读取器和标签经过双向信令,其使读者能够提取标签ID以验证合法标签(L-TAG)。然后,我们考虑一个情景,由此对恶意标签(M-Tag)的情景 - 通过向导尝试通过假装成为L-Tag来欺骗读者的LTAG。为此,我们通过利用读取器和标签之间的端到端通道(即残余通道)的非互动来对抗身份攻击作为标签的指纹。标签的被动性(因此,标签处的任何计算平台缺少)意味着所提出的轻质物理层认证方法在读取器处实现。为了具体,在我们提出的方案中,读者通过双向(挑战 - 响应)消息交换机制来获取原始数据,以提取指纹的最小二乘估计,并执行用于进行身份验证的二进制假设测试。我们还为两个误差的概率提供封闭式表达式(即,误报和错过检测)。模拟结果证明了所提出的方法的功效。

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