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IoT Device Security: Challenging A Lightweight RFID Mutual Authentication Protocol Based on Physical Unclonable Function

机译:物联网设备安全:挑战基于物理不可克隆功能的轻型RFID相互认证协议

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摘要

With the exponential increase of Internet of things (IoT) connected devices, important security risks are raised as any device could be used as an attack channel. This preoccupation is particularly important with devices featuring limited processing power and memory capabilities for security purposes. In line with this idea, Xu et al. (2018) proposed a lightweight Radio Frequency Identification (RFID) mutual authentication protocol based on Physical Unclonable Function (PUF)—ensuring mutual tag-reader verification and preventing clone attacks. While Xu et al. claim that their security protocol is efficient to protect RFID systems, we found it still vulnerable to a desynchronization attack and to a secret disclosure attack. Hence, guidelines for the improvements to the protocol are also suggested, for instance by changing the structure of the messages to avoid trivial attacks. In addition, we provide an explicit protocol for which our formal and informal security analysis have found no weaknesses.
机译:随着物联网(IoT)连接设备的指数级增长,由于任何设备都可以用作攻击渠道,因此引发了重要的安全风险。对于出于安全目的而具有有限处理能力和存储能力的设备而言,这种关注尤其重要。符合这个想法,徐等。 (2018)提出了一种基于物理不可克隆功能(PUF)的轻量级射频识别(RFID)相互认证协议-确保相互标签读取器验证并防止克隆攻击。而徐等。由于声称它们的安全协议可以有效保护RFID系统,因此我们发现它仍然容易受到去同步攻击和秘密泄露攻击的攻击。因此,还提出了改进协议的指南,例如,通过更改消息的结构以避免小规模的攻击。此外,我们提供了一个明确的协议,对此我们的正式和非正式安全分析均未发现任何弱点。

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