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An Empirical Study for Protecting Passive RFID Systems against Cloning

机译:防止无源RFID系统克隆的实证研究

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RFID technology plays a key role in various areas of interest without guaranteeing security and privacy issues. Limitations of tag design make privacy and security enforcement a special challenge. In this paper, we introduce the essential components of an RFID system. Subsequently the RFID tag-to-reader authentication is presented as a solution framework for the tag cloning problem. The proposed solution involves receiving EPC RFID Generation-2 standard response messages, which vary according to power level when sent a tag KILL command. Moreover, an empirical analysis is conducted to determine the necessary power level to kill the RFID tag for different brands and types. The intention of the conducted experiments is to determine the necessary power levels at which various RFID tags were able to be killed when preprogrammed with a specific KILL password. The authors found that results of power levels at which tags killed themselves varied widely.
机译:在不保证安全和隐私问题的情况下,RFID技术在各个领域都发挥着关键作用。标签设计的局限性使得隐私和安全实施成为一个特殊的挑战。在本文中,我们介绍了RFID系统的基本组件。随后,将RFID标签到读取器的身份验证作为解决标签克隆问题的解决方案框架。提出的解决方案涉及接收EPC RFID第2代标准响应消息,当发送标签KILL命令时,该消息会根据功率级别而变化。此外,进行了经验分析,以确定杀死不同品牌和类型的RFID标签所需的功率水平。进行实验的目的是确定使用特定的KILL密码进行预编程时可以杀死各种RFID标签的必要功率水平。作者发现,标签杀死自己的功率水平结果差异很大。

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