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首页> 外文期刊>International Journal of Information Security >Lightweight multi-factor mutual authentication protocol for IoT devices
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Lightweight multi-factor mutual authentication protocol for IoT devices

机译:IOT设备的轻量级多因素相互认证协议

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The Internet-of-Things (IoT), which refers to the interconnection of heterogeneous devices, has gained a lot of interest lately, and it witnessed a large growth in the number of IoT devices due to the importance of such systems in today's communication networks. On the other hand, the authentication of entities (devices) is a major concern and a main security challenge in IoT systems since any weakness in the identification or authentication process will allow a compromised entity to establish communication, inject false data and launch dangerous attacks leading to system malfunction. Currently, most IoT authentication mechanisms are based on single-factor cryptographic solutions. These techniques are not practical for IoT devices that have limited computational capabilities. In this paper, we propose a lightweight and secure multi-factor device authentication protocol for IoT devices. The scheme is based on two concepts, configurable physical unclonable functions (PUF) within IoT devices, and channel-based parameters. It uses few and simple cryptographic operations such as the bit-wise exclusive-OR operation and a one-way hash function. The unique PUF value serves as the mutual secret identifier between a pair of users, which frequently changes for every session. Moreover, the proposed protocol exploits the random channel characteristics to provide high robustness against different kinds of attacks, while maintaining low complexity. To the best of the authors' knowledge, this is the first work that combines physical layer security with PUFs to authenticate communicating devices, dynamically. Security and performance analysis prove the security and efficiency of the proposed protocol, which is designed with minimum overhead in terms of computations and communication costs.
机译:关于异构设备的互连,互联网(物联网)最近已经获得了很多兴趣,并且由于在今天的通信网络中的这种系统的重要性,IOT设备的数量存在很大的增长。另一方面,实体的身份验证(设备)是IOT系统中的主要问题和主要安全挑战,因为识别或认证过程中的任何弱点都将允许受损实体建立通信,注入错误数据并启动危险攻击系统故障。目前,大多数IOT身份验证机制基于单因素加密解决方案。这些技术对于具有有限的计算能力的IOT设备并不实用。在本文中,我们为IOT设备提出了一种轻量级和安全的多因素设备认证协议。该方案基于IOT设备中的两个概念,可配置的物理不可渗透功能(PUF)和基于频道的参数。它使用了很少和简单的加密操作,例如比特 - WISE独占或操作和单向散列函数。唯一的PUF值用作一对用户之间的相互密钥标识符,它们经常对每个会话进行更改。此外,所提出的协议利用随机信道特性来提供针对不同种类的攻击的高稳健性,同时保持低复杂性。据作者所知,这是第一个将物理层安全性与PUF合并的工作,以动态地验证通信设备。安全性和性能分析证明了所提出的协议的安全性和效率,该方案在计算和通信成本方面的最小开销。

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