Enhanced challenge-response set and secure usage scenarios for ordering-based ring oscillator-physical unclonable functions

Giray Kömürcü, A. E. Pusane, Günhan Dündar
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引用次数: 11

Abstract

The number of applicable challenge–response pairs (CRPs) in physical unclonable functions (PUFs) is critical especially for authentication protocols in security systems. Ideally, full read-out of all CRPs should be infeasible and CRPs should be independent from each other for a highly secure system. CRP concept is not defined in ordering-based ring oscillator (RO) PUFs presented in the literature. In this paper, the authors propose two methods for enhanced CRP set in ordering-based RO-PUFs and analyse their performance in terms of uniqueness and area efficiency. Next, they propose three secure usage scenarios based on enhanced CRP set methods, preventing the CRPs from leaking information about each other. With the proposed systems, 100% robust, area and power efficient and secure PUF structures with exponential number of CRPs become possible that are very convenient especially for authentication protocols.
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增强的挑战-响应集和安全的基于顺序的环形振荡器-物理不可克隆功能的使用场景
物理不可克隆功能(puf)中适用的质询响应对(CRPs)的数量对于安全系统中的身份验证协议尤其重要。理想情况下,对于高度安全的系统,所有crp的完整读出应该是不可行的,并且crp应该相互独立。在文献中提出的基于有序的环形振荡器(RO) puf中没有定义CRP概念。本文提出了两种基于有序的ro - puf增强CRP集的方法,并从唯一性和面积效率两方面分析了它们的性能。接下来,他们提出了三种基于增强CRP集方法的安全使用场景,防止CRP相互泄露信息。利用所提出的系统,100%鲁棒性,面积和功率效率以及具有指数数量的crp的安全PUF结构成为可能,这非常方便,特别是对于身份验证协议。
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