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Securing IoT-Based RFID Systems: A Robust Authentication Protocol Using Symmetric Cryptography

机译:保护基于物联网的RFID系统:使用对称密码术的强大身份验证协议

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摘要

Despite the many conveniences of Radio Frequency Identification (RFID) systems, the underlying open architecture for communication between the RFID devices may lead to various security threats. Recently, many solutions were proposed to secure RFID systems and many such systems are based on only lightweight primitives, including symmetric encryption, hash functions, and exclusive OR operation. Many solutions based on only lightweight primitives were proved insecure, whereas, due to resource-constrained nature of RFID devices, the public key-based cryptographic solutions are unenviable for RFID systems. Very recently, Gope and Hwang proposed an authentication protocol for RFID systems based on only lightweight primitives and claimed their protocol can withstand all known attacks. However, as per the analysis in this article, their protocol is infeasible and is vulnerable to collision, denial-of-service (DoS), and stolen verifier attacks. This article then presents an improved realistic and lightweight authentication protocol to ensure protection against known attacks. The security of the proposed protocol is formally analyzed using Burrows Abadi-Needham (BAN) logic and under the attack model of automated security verification tool ProVerif. Moreover, the security features are also well analyzed, although informally. The proposed protocol outperforms the competing protocols in terms of security.
机译:尽管射频识别(RFID)系统的许多便利性,但RFID设备之间的通信的底层开放式架构可能导致各种安全威胁。最近,提出了许多解决方案来保护RFID系统,许多这样的系统仅基于轻量级基元,包括对称加密,散列函数和独占或操作。许多基于轻量级基元的解决方案被证明不安全,而由于RFID设备的资源受限性质,基于公钥的密码解决方案对于RFID系统来说是不可否认的。最近,Gope和Hwang提出了一种基于轻量级基元的RFID系统认证协议,并声称其协议可以承受所有已知的攻击。但是,根据本文的分析,它们的协议是不可行的,并且易于碰撞,拒绝服务(DOS)和盗窃者攻击。然后,本文提出了一种改进的实际和轻量级认证协议,以确保防止已知攻击。拟议协议的安全性在正式分析了使用挖掘Abadi-Consureham(禁令)逻辑,并在自动安全验证工具箴言的攻击模型下进行分析。此外,虽然非正式地,安全功能也很好地分析。拟议的协议在安全方面优于竞争方案。

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