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On Comparing Side-Channel Preprocessing Techniques for Attacking RFID Devices

机译:关于攻击RFID设备的边道预处理技术的比较

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摘要

Security-enabled RFID tags become more and more important and integrated in our daily life. While the tags implement cryptographic algorithms that are secure in a mathematical sense, their implementation is susceptible to attacks. Physical side channels leak information about the processed secrets. This article focuses on practical analysis of electromagnetic (EM) side channels and evaluates different preprocessing techniques to increase the attacking performance. In particular, we have applied filtering and EM trace-integration techniques as well as Differential Frequency Analysis (DFA) to extract the secret key. We have investigated HF and UHF tag prototypes that implement a randomized AES implementation in software. Our experiments prove the applicability of different preprocessing techniques in a practical case study and demonstrate their efficiency on RFID devices. The results clarify that randomization as a countermeasure against side-channel attacks might be an insufficient protection for RFID tags and has to be combined with other proven countermeasure approaches.
机译:具有安全性的RFID标签在我们的日常生活中变得越来越重要和集成。尽管标签实现了从数学意义上讲是安全的密码算法,但是它们的实现容易受到攻击。物理侧通道泄漏有关已处理机密的信息。本文重点介绍电磁(EM)侧通道的实用分析,并评估不同的预处理技术以提高攻击性能。特别是,我们已经应用了过滤和EM跟踪集成技术以及差分频率分析(DFA)来提取密钥。我们研究了在软件中实现随机AES实现的HF和UHF标签原型。我们的实验在实际案例研究中证明了不同预处理技术的适用性,并证明了它们在RFID设备上的效率。结果表明,随机化作为对付侧信道攻击的对策可能不足以保护RFID标签,因此必须与其他经过验证的对策方法结合起来。

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