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Efficient Detection of Cloned Attacks for Large-Scale RFID Systems

机译:大型RFID系统的克隆攻击的有效检测

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This paper studies a practically important problem of cloned tag detection in large-scale RFID systems where an attacker compromises genuine tags and produces their replicas, namely cloned tags, to threaten RFID applications. Although many efforts have been made to address this problem, the existing work can hardly satisfy the stringent real-time requirement, and thus cannot catch cloning attacks in a time-efficient way. Moreover, the existing work does not consider energy-efficiency, which is very critical when battery-powered active tags are used. To fill these gaps, this paper proposes a Location Polling-based Cloned tag Detection (LP-CTD) protocol by taking both time-efficiency and energy-efficiency into consideration. LP-CTD reports the existence of cloned tags when the reader finds an expected singleton slot appearing as collision one. To improve the efficiency of detecting cloned tags, only sampled tags in LP-CTD participate in the detection process. Theoretical analysis on the proposed protocol is conducted to minimize their execution time and energy consumption. Extensive simulation experiments are conducted to evaluate the performance of the proposed protocols. The results demonstrate that the proposed LP-CTD protocol considerably outperforms the latest related protocols by reducing more than 80% of the execution time, and more than 90% of the energy consumption.
机译:本文研究了在大型RFID系统中一个重要的克隆标签检测问题,在该系统中,攻击者破坏了真正的标签并产生其副本(即克隆标签)来威胁RFID应用。尽管已经做出许多努力来解决该问题,但是现有的工作几乎不能满足严格的实时要求,因此不能以省时的方式捕获克隆攻击。此外,现有工作没有考虑能源效率,这在使用电池供电的有源标签时非常关键。为了弥补这些空白,本文提出了一种基于位置轮询的克隆标签检测(LP-CTD)协议,该协议同时考虑了时间效率和能源效率。当阅读器发现预期的单例插槽显示为冲突插槽时,LP-CTD报告存在克隆标签。为了提高检测克隆标签的效率,仅LP-CTD中的采样标签会参与检测过程。对提出的协议进行了理论分析,以最大程度地减少其执行时间和能耗。进行了广泛的仿真实验,以评估所提出协议的性能。结果表明,所建议的LP-CTD协议通过减少80%以上的执行时间和90%以上的能耗,大大优于最新的相关协议。

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