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一种基于物理不可克隆功能的轻量级射频识别相互认证协议。

A Lightweight RFID Mutual Authentication Protocol Based on Physical Unclonable Function.

作者信息

Xu He, Ding Jie, Li Peng, Zhu Feng, Wang Ruchuan

机构信息

School of Computer Science, Nanjing University of Posts and Telecommunications, Nanjing 210023, China.

Jiangsu High Technology Research Key Laboratory for Wireless Sensor Networks, Nanjing 210003, China.

出版信息

Sensors (Basel). 2018 Mar 2;18(3):760. doi: 10.3390/s18030760.

Abstract

With the fast development of the Internet of Things, Radio Frequency Identification (RFID) has been widely applied into many areas. Nevertheless, security problems of the RFID technology are also gradually exposed, when it provides life convenience. In particular, the appearance of a large number of fake and counterfeit goods has caused massive loss for both producers and customers, for which the clone tag is a serious security threat. If attackers acquire the complete information of a tag, they can then obtain the unique identifier of the tag by some technological means. In general, because there is no extra identifier of a tag, it is difficult to distinguish an original tag and its clone one. Once the legal tag data is obtained, attackers can be able to clone this tag. Therefore, this paper shows an efficient RFID mutual verification protocol. This protocol is based on the Physical Unclonable Function (PUF) and the lightweight cryptography to achieve efficient verification of a single tag. The protocol includes three process: tag recognition, mutual verification and update. The tag recognition is that the reader recognizes the tag; mutual verification is that the reader and tag mutually verify the authenticity of each other; update is supposed to maintain the latest secret key for the following verification. Analysis results show that this protocol has a good balance between performance and security.

摘要

随着物联网的快速发展,射频识别(RFID)已被广泛应用于许多领域。然而,RFID技术的安全问题在为人们生活带来便利的同时也逐渐暴露出来。特别是大量假冒伪劣商品的出现给生产者和消费者都造成了巨大损失,其中克隆标签是一个严重的安全威胁。如果攻击者获取了标签的完整信息,他们就可以通过一些技术手段获得标签的唯一标识符。一般来说,由于标签没有额外的标识符,很难区分原始标签及其克隆标签。一旦获取了合法标签的数据,攻击者就能够克隆该标签。因此,本文提出了一种高效的RFID相互验证协议。该协议基于物理不可克隆函数(PUF)和轻量级密码学,以实现对单个标签的高效验证。该协议包括三个过程:标签识别、相互验证和更新。标签识别是指阅读器识别标签;相互验证是指阅读器和标签相互验证对方的真实性;更新是为了维护用于后续验证的最新密钥。分析结果表明,该协议在性能和安全性之间取得了良好的平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92d3/5876676/50060cf523b0/sensors-18-00760-g001.jpg

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