基于传感器的超高频RFID标签寄生后向散射测量研究

Thomas Plos, Christian Maierhofer
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引用次数: 3

摘要

射频识别(RFID)标签已经进入了许多应用领域。当标签实现加密算法时,侧信道分析(SCA)攻击成为一个问题。特别是在超高频(UHF)范围内的标签容易受到所谓的寄生-反向散射攻击,这种攻击可以从远处应用。然而,众所周知,这种攻击对被动低成本标签是一种威胁,到目前为止,对于启用传感器的标签还没有结果。在这项工作中,我们通过进行差分电磁分析(DEMA)攻击来评估无线识别和传感平台(WISP)标签的寄生后向散射。我们从30厘米的距离对被动和半被动操作的WISP标签进行攻击,并将结果与对商业低成本标签的攻击进行比较。结果表明,评估的WISP标签比评估的商业低成本标签更容易受到基于寄生后向散射的DEMA攻击。此外,我们提出了一种测量方法,可以检测在强读取器场上调制的弱寄生后向散射,而不需要昂贵的硬件接收器或专用解调电路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On measuring the parasitic backscatter of sensor-enabled UHF RFID tags

Radio-frequency identification (RFID) tags have found their way into many applications. When tags implement cryptographic algorithms, side-channel analysis (SCA) attacks become a concern. Especially tags in the ultra-high frequency (UHF) range are susceptible to so-called parasitic-backscatter attacks that can be applied from a distance. Whereas it is known that such attacks are a threat for passive low-cost tags, no results are so far available for sensor-enabled tags. In this work, we evaluate the parasitic backscatter of wireless identification and sensing platform (WISP) tags by conducting differential electromagnetic analysis (DEMA) attacks. We apply the attacks on a passively as well as a semi-passively operated WISP tag from a distance of 30 cm and compare the results with an attack on a commercial low-cost tag. The results show that the evaluated WISP tags are less susceptible to DEMA attacks based on the parasitic backscatter than the evaluated commercial low-cost tag. Moreover, we present a measurement approach that allows to detect the weak parasitic backscatter modulated on the strong reader field without the need for an expensive hardware receiver or a dedicated demodulation circuit.

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