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Lightweight Hardware Based Secure Authentication Scheme for Fog Computing

机译:基于轻量级硬件的雾计算安全认证方案

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Fog computing is a new paradigm that extends cloud computing to the network edges. As data processing, communications, and control are performed more closely to the end-user devices in fog computing, chances for the attackers to gain unauthorized accesses to sensitive data have been greatly increased. In this paper, we propose a new resource-efficient physical unclonable function (PUF) based authentication scheme to protect the security and privacy of the confidential information in edge devices. Unlike other PUF based lightweight authentication schemes, our proposed method remarkably increases the machine learning attack time without requiring a server to store a large amount of challenge response pairs (CRPs). Besides, a new strong PUF with feedback loop is employed in our scheme to further resist the machine learning attacks that have demonstrated efficacy in compromising strong PUFs. Our proof-of-concept implementation shows that the proposed scheme is suitable for resource-constrained end-user devices in terms of memory, computation, and security.
机译:雾计算是将云计算扩展到网络边缘的新范例。随着雾处理中数据处理,通信和控制与最终用户设备的执行更加紧密,攻击者获得对敏感数据进行未经授权访问的机会大大增加。在本文中,我们提出了一种新的基于资源高效的物理不可克隆功能(PUF)的身份验证方案,以保护边缘设备中机密信息的安全性和私密性。与其他基于PUF的轻量级身份验证方案不同,我们提出的方法显着增加了机器学习攻击时间,而无需服务器存储大量的质询响应对(CRP)。此外,在我们的方案中采用了一种新的带有反馈回路的强大PUF,以进一步抵抗已经证明可以有效削弱强大PUF的机器学习攻击。我们的概念验证实现表明,从内存,计算和安全性方面来说,所提出的方案适用于资源受限的最终用户设备。

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