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Physical Unclonable Function Based Authentication Scheme for Smart Devices in Internet of Things

机译:基于物理不可渗透功能的智能设备在Internet的智能设备的认证方案

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Internet of Things (IoT) comprises of huge number of connected smart devices to exchange sensed data across different networks. With the rapid growth in security applications development, Physical Unclonable Functions (PUF) has gain interest of researchers. PUF exploits the random factors of IC manufacturing process to generate a variety of mismatches. It helps to generate different unique challenge-response pairs to store in repository and then use for secure associations between the smart devices in IoT. Memory based and Analog electronic based PUFs are mostly used for providing dependable security where MOS transistors based PUF achieve a large variety of mismatches with smaller sizes as compared to others. This paper presents a PUF based Authentication Scheme (PAS) along session keying in order to ensure the secure interaction among smart devices in IoT. We have also proposed the registration and authentication mechanism along with session keying based on challenge-response pair. Next, we present the secure command execution protocol among requesting devices, gateway and smart devices. To validate our work, we have setup a testbed and compared the existing schemes with our proposed PAS in terms of communication overhead during authentication and resilience against device capturing. Results ensure the supremacy of proposed approach over the counterparts.
机译:事物(IoT)包括大量连接的智能设备,以跨不同网络交换所感测的数据。随着安全应用发展的快速增长,物理不可分类的功能(PUF)已经获得了研究人员的利益。 PUF利用IC制造过程的随机因子来产生各种不匹配。它有助于在存储库中存储不同的唯一挑战 - 响应对,然后用于IOT中的智能设备之间的安全关联。基于存储器和模拟电子基础的PUF主要用于提供可靠的安全性,其中基于MOS晶体管的PUF达到与他人相比较小尺寸的各种不匹配。本文介绍了沿会话键控的基于PUF的身份验证方案(PAS),以确保IOT中的智能设备之间的安全交互。我们还提出了注册和认证机制以及基于挑战 - 响应对的会话键控。接下来,我们在请求设备,网关和智能设备之间呈现安全命令执行协议。为了验证我们的工作,我们已经建立了一个测试平台,并在认证和恢复设备捕获期间,在通信开销方面与我们提出的PAS比较现有方案。结果确保了所提出的方法对同行的至高无上。

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