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A double PUF-based RFID identity authentication protocol in service-centric internet of things environments

机译:以可靠的基于PUF的RFID身份认证协议为中心的物联网环境

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The rapid development of sensing, automation and communication technologies has led to the proliferation of the Internet of Things (IoT), providing recognized promising opportunities to build complex industrial systems and applications, leveraging the growing ubiquity of Radio Frequency Identification (RFID) and wireless sensor devices. With the pervasiveness of the interconnected systems encompassed with an ever-growing number of RFID-enabled devices being deployed, RFID security is an issue of high concern. As lightweight security encryption primitive, Physical Unclonable Function (PUF) is used to protect the information security of low-cost devices. Unfortunately, they are vulnerable to attacks, so countermeasures should be employed in the design. Aimed at low-cost and security of connected IoT devices to satisfy various security requirements of RFID technology in IoT, a two-stage multiple-choice arbiter (TSMCA)-based PUF in RFID systems is proposed, referred as TSMCA PUF. It is aimed at the design of a double PUF-based bidirectional RFID identity authentication protocol that permits the realization of bidirectional authentication between a server and a tag for the IC authentication in low-cost RFID systems, where the exclusive-OR (XOR) and character padding operations are adopted to generate the response of the PUF; the string-matching method is used in authentication, without exposing the PUF response to the verifier. Evaluation and analysis show that the advantages over conventional schemes include reduced area, higher randomness, and high stability, yet experimental results depict that the proposed protocol is promising resilient against attacks and practical for the deployment of low-cost hardware. (C) 2019 Elsevier Inc. All rights reserved.
机译:传感,自动化和通信技术的快速发展导致了事物互联网(IOT)的扩散,提供了建立复杂的工业系统和应用的公认有希望的机会,利用射频识别(RFID)和无线传感器的不断增长设备。随着互联系统的普遍性,包含越来越多的支持RFID设备,RFID安全性是高度关注的问题。作为轻量级安全加密原语,物理不可渗透功能(PUF)用于保护低成本设备的信息安全性。不幸的是,他们容易受到攻击,因此应该在设计中采取对策。针对连接物联网设备的低成本和安全性,以满足IOT中RFID技术的各种安全要求,提出了一种在RFID系统中基于RFID系统中的两阶段多项选择仲裁器(TSMCA),称为TSMCA PUF。它旨在设计一种基于DOU的PUF的双向RFID身份认证协议,允许在低成本RFID系统中实现服务器和标签之间的双向认证,其中包括(XOR)和采用字符填充操作来产生PUF的响应;字符串匹配方法用于身份验证,而不将PUF响应暴露于验证者。评估和分析表明,传统方案的优点包括降低面积,较高的随机性和高稳定性,但实验结果描述了所提出的协议对攻击和实用的攻击和实用性来部署低成本硬件。 (c)2019 Elsevier Inc.保留所有权利。

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