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Lightweight PUF-Based Authentication Protocol for IoT Devices

机译:用于IOT设备的轻量级PUF的身份验证协议

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Conventional cryptographic solutions to the security are expensive in terms of computing resources (memory and processing capacity) and power consumption. They are not suitable for the Internet of Things devices that have constrained resources. In this regard, physically unclonable functions (PUFs) have become an increasingly popular technology for building secure authentication in these systems. In this paper, we propose lightweight PUF-based authentication protocol. This was implemented on a wireless sensor network constructed using the resource-limited IoT devices: Zolertia Zoul re-mote. The functionality of the proposed scheme was verified using a server-client configuration. Then power consumption and memory utilisation of the proposed protocol were estimated and compared with the existing solutions, namely: DTLS (datagram transport layer security) handshake protocol and UDP (user datagram protocol). Our results indicate that the proposed PUF based authentication saves up to 45% power and uses 12% less memory compared to DTLS handshake authentication.
机译:在计算资源(内存和处理能力)和功耗方面,传统的加密解决方案是昂贵的。它们不适合具有受约束资源的设备互联网。在这方面,物理上不可渗透的功能(PUF)已成为在这些系统中建立安全认证的越来越流行的技术。在本文中,我们提出了基于轻量级的PUF的身份验证协议。这是在使用资源限制的IOT设备构造的无线传感器网络上实现:ZOLETIA ZOUL RE-MOTE。使用Server-Client配置验证了所提出的方案的功能。然后估计所提出的协议的功耗和内存利用率,并与现有解决方案进行比较,即:DTL(数据报传输层安全)握手协议和UDP(用户数据报协议)。我们的结果表明,与DTLS握手认证相比,所提出的基于PUF的验证可节省高达45%的电源,并使用12%的内存。

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