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Reconfiguring the Mux-Based Arbiter PUF using FeFETs

机译:使用FEFET重新配置基于MUX的仲裁器PUF

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Physical Unclonable Functions (PUFs) are lightweight security primitives that exploit complex manufacturing variations in integrated circuits to extract secret keys. It is well-established that the unique keys generated by the mux-based arbiter PUF can be predicted accurately using logistic regression (LR), provided a set of challenge-response pairs (CRPs) are known. The integration of 28nm HKMG FeFET with CMOS technology has been shown to neither alter the switching behavior of the FeFET, nor affect the baseline CMOS. In this work, we present simulation results that discuss the possibility of using the FeFET to design “stronger” arbiter PUFs that can be reconfigured at least 6n times, where n represents the number of stages. Results from LR based attacks suggest that the training dataset may need to be updated after every reconfiguration cycle, preventing the adversary from collecting enough training data for each configuration within a reasonable amount of time for a security breach.
机译:物理不可渗透功能(PUF)是轻量级安全原语,其利用集成电路中的复杂制造变化来提取密钥。很好地确定,可以使用Logistic回归(LR)精确地预测由基于MUX的仲裁器PUF产生的独特键,提供了一组质询 - 响应对(CRP)是已知的。已经显示了28nm HKMG FEFET与CMOS技术的集成既不会改变FEFET的切换行为,也不会影响基线CMOS。在这项工作中,我们展示了仿真结果,讨论了使用FEFET设计的可能性“更强大”仲裁器PUF,至少可以重新配置 n 次数,其中n表示阶段的数量。基于LR的攻击结果表明,在每次重新配置周期之后可能需要更新训练数据集,防止对手在合理的时间内为每个配置收集足够的训练数据以进行安全漏洞。

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