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Identification of Cloned HF RFID Proximity Cards Based on RF Fingerprinting

机译:基于RF指纹识别的克隆HF RFID接近卡的识别

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Passively powered high frequency (HF) Radio Frequency Identification (RFID) proximity cards have been widely used in many fields. Meanwhile, a lot of security and privacy threats such as cloning, unauthorized tracking have arisen. Many security protocols have been proposed. However, most of them focused on security implication of the logical layer, little attention was paid to characteristics of the physical layer. In this work, we consider identification of HF RFID proximity cards by investigating electromagnetic characteristics of their physical layers. A new RF fingerprint extraction method is proposed based on normalized power spectral density of envelop of the card response. The most useful features for identification are found within 5 odd harmonics of digital transmission and the subcarrier modulation frequency. After evaluating our technique on a set of 300 RFID cards from 6 manufacturers, we can achieve Equal Error Rate (EER)=0 for all types by selecting appropriate thresholds. As the feature extraction can be implemented under normal working state of cards, it is practical and efficient to realize real-time identification of HF RFID proximity cards.
机译:被动供电的高频(HF)射频识别(RFID)接近卡已广泛应用于许多领域。与此同时,出现了许多安全和隐私威胁,如克隆,未经授权的跟踪。已经提出了许多安全协议。但是,大多数集中于逻辑层的安全意义,对物理层的特征支付了很少的关注。在这项工作中,我们考虑通过研究其物理层的电磁特性来识别HF RFID接近卡。基于卡响应包围的归一化功率谱密度提出了一种新的RF指纹提取方法。识别最有用的功能是在数字传输和子载波调制频率的5个奇的谐波范围内找到。在从6个制造商的一组300 RFID卡上评估我们的技术后,我们可以通过选择适当的阈值来实现所有类型的相同错误率(eer)= 0。由于特征提取可以在卡的正常工作状态下实现,实现HF RFID接近卡的实时识别是实用且有效的。

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