Randomizing RFID private authentication

Qingsong Yao, Yong Qi, Jinsong Han, Jizhong Zhao, Xiangyang Li, Yunhao Liu
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引用次数: 53

Abstract

Privacy protection is increasingly important during authentications in Radio Frequency Identification (RFID) systems. In order to achieve high-speed authentication in large-scale RFID systems, researchers propose tree-based approaches, in which any pair of tags share a number of key components. Such designs, being efficient, often fail to achieve forward secrecy and resistance to attacks, such as compromising and desynchronization. Indeed, these attacks may still take effect even after a tag successfully finishes the authentication and key-updating procedure. To address the issue, we propose a lightweight RFID private authentication protocol, RWP, based on the random walk concept. RWP also provides the forward security and temporal resistance to the tracking attack. The analysis results show that RWP effectively enhances the security protection for RFID private authentication, and increases the authentication efficiency from O(logN) to O(1).
随机RFID私有认证
在射频识别(RFID)系统的认证过程中,隐私保护变得越来越重要。为了在大规模RFID系统中实现高速认证,研究人员提出了基于树的方法,其中任何一对标签共享许多关键组件。这种设计虽然有效,但往往无法实现前向保密和抵抗攻击,例如妥协和去同步。实际上,即使在标记成功完成身份验证和密钥更新过程之后,这些攻击仍然可能生效。为了解决这个问题,我们提出了一种基于随机游走概念的轻量级RFID私有认证协议RWP。RWP还提供了前向安全性和对跟踪攻击的时间抵抗。分析结果表明,RWP有效增强了RFID私有认证的安全防护,将认证效率从0 (logN)提高到O(1)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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