基于NFSR的RFID安全互认证协议

T. Suresh, M. Ramakrishnan
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引用次数: 2

摘要

射频识别(RFID)是一种自动识别程序,依赖于使用称为RFID标签的设备存储和远程恢复信息。RFID标签包含一个电子产品代码(EPC),可以唯一地确定每个标记的项目。RFID标签将其独特的EPC与相关产品信息存储在标签的内存中,并在读取器请求时发送此信息。研究人员已经证明,电子产品代码(EPC)第1类第2代(C1G2)规范存在严重的安全问题。针对EPC C1G2协议存在的缺陷,提出了一种新的超轻量级互认证方案。我们只使用异或运算和适当的非线性反馈移位寄存器(NFSR)来实现高安全性。安全性分析表明,我们的协议将提供众多的隐私属性,并避免遭受各种攻击,包括标签匿名,阅读器隐私,传输保密,标签,位置保护和相互认证,重放攻击等。采用ISE模拟器对所提出的方案进行了仿真,并采用Xilinx合成技术进行了合成。该方法在FPGA上实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mutual authentication protocol for RFID security using NFSR
Radio-Frequency Identification (RFID) is an automated identification procedure, relying on storing and remotely recovering information using devices called RFID tag. RFID tags contain an electronic product code (EPC) that may uniquely determine every tagged item. The RFID tag stores its distinctive EPC with related product information within the tag's memory and sends this information whenever the reader requests them. Researchers have proven that the Electronic Product Code (EPC) Class-1 Generation-2 (C1G2) specification has critical security problems. In this paper, we proposed a new ultra lightweight mutual authentication scheme to overcome weakness in an EPC C1G2 Protocol. We only use XOR operation and appropriate Non-Linear Feedback Shift Register (NFSR) to accomplish high security. Security analysis demonstrates that our protocol will offer numerous privacy properties and avoid suffering from different kinds of attacks, including tag anonymity, reader privacy, transfer secrecy, tag, location protection and mutual authentication, replay attack etc. The proposed scheme was simulated using the ISE simulator and synthesized using Xilinx synthesis technology. The proposed method was implemented on FPGA.
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