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An innovative delay based algorithm to boost PUF security against machine learning attacks

机译:一种基于创新的延迟算法,用于加强机器学习攻击的PUF安全性

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Physical Unclonable Functions (PUFs) are the state-of-the-art topic in hardware oriented security and trust (HOST). PUFs have recently emerged as a promising solution for cyber security related issues including low-cost chip authentication, hacking of digital systems and tampering of physical systems. In this paper, a dynamic area efficient design along with an algorithm, namely, Optimal Time Delay Algorithm (OTPA) are proposed to improve the ROPUF challenge/response pairs (CRPs space). The generated CRPs space using this algorithm exhibit high PUF performance in terms of uniqueness and reliability. Experimental results demonstrate the competence of this innovative algorithm to enhance the CRP space using the probability of combinational statistic formula for improved security of the ROPUF against modeling attacks.
机译:物理不可渗透功能(PUF)是硬件导向安全和信任(主机)的最先进的主题。 Pufs最近被出现为网络安全相关问题的有希望的解决方案,包括低成本芯片认证,数字系统的黑客攻击和物理系统的篡改。 本文提出了一种动态区域高效设计以及算法,即最佳时间延迟算法(OTPA),以改善ROPUF挑战/响应对(CRPS空间)。 使用该算法的生成的CRPS空间在唯一性和可靠性方面表现出高的PUF性能。 实验结果表明,这种创新算法的能力,利用组合统计公式提高了CRP空间,以提高ROPUF对建模攻击的安全性。

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