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物理不可克隆函数和散列是相互认证物联网设备所需的全部。

Physical Unclonable Function and Hashing Are All You Need to Mutually Authenticate IoT Devices.

机构信息

TSYS School of Computer Science, Columbus State University, Columbus, GA 31907, USA.

出版信息

Sensors (Basel). 2020 Aug 5;20(16):4361. doi: 10.3390/s20164361.

Abstract

Internet of Things (IoT) has become the driving force in modern day technology with an increasing and rapid urge to create an intelligent, efficient, and connected world. IoT is used in manufacturing, agriculture, transportation, education, healthcare and many other business environments as well as home automation. Authentication for IoT devices is essential because many of these devices establish communication with servers through public networks. A rigorous lightweight device authentication scheme is needed to secure its physical hardware from cloning or side-channel attacks and accommodate the limited storage and computational power of IoT devices in an efficient manner. In this paper, we introduce a lightweight mutual two-factor authentication mechanism where an IoT device and the server authenticate each other. The proposed mechanism exploits Physical Unclonable Functions (PUFs) and a hashing algorithm with the purpose of achieving a secure authentication and session key agreement between the IoT device and the server. We conduct a type of formal analysis to validate the protocol's security. We also validate that the proposed authentication mechanism is secure against different types of attack scenarios and highly efficient in terms of memory storage, server capacity, and energy consumption with its low complexity cost and low communication overhead. In this sense, the proposed authentication mechanism is very appealing and suitable for resource-constrained and security-critical environments.

摘要

物联网(IoT)已成为现代技术的驱动力,人们迫切希望创造一个智能、高效和互联的世界。物联网在制造业、农业、交通、教育、医疗保健和许多其他商业环境以及家庭自动化中得到应用。物联网设备的认证至关重要,因为许多这些设备通过公共网络与服务器建立通信。需要严格的轻量级设备认证方案来保护其物理硬件免受克隆或旁路攻击,并以高效的方式适应物联网设备的有限存储和计算能力。在本文中,我们引入了一种轻量级的互两个因素认证机制,其中物联网设备和服务器相互认证。所提出的机制利用物理不可克隆函数(PUFs)和哈希算法,以实现物联网设备和服务器之间的安全认证和会话密钥协议。我们进行了一种形式化分析来验证协议的安全性。我们还验证了所提出的认证机制在不同类型的攻击场景下是安全的,并且在存储、服务器容量和能量消耗方面具有高效性,其复杂度低、通信开销低。从这个意义上说,所提出的认证机制非常有吸引力,适合资源受限和安全关键的环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f15/7472131/215259f82870/sensors-20-04361-g001.jpg

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