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Fault Diagnosis of Arbiter Physical Unclonable Function

机译:仲裁物理不可渗透功能的故障诊断

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Physical Unclonable Function (PUF) has broad application prospects in the field of hardware security. If faults happen in PUF during manufacturing, the security of whole chip will be threatened. Fault diagnosis plays an important role in the yield learning process. However, since different manufactured PUFs with the same design have different Challenge-Response Pairs (CRPs), which cannot be predicted, the traditional fault diagnosis method based on comparing the fault-free responses of a design and the failing responses of chips is no longer suitable for diagnosing PUF. Therefore, this paper proposes a fault diagnosis method toward classic arbiter PUF. The stuck-at faults and the delay faults are considered. Based on the expected uniformity of arbiter PUF, a diagnostic challenge generation method and a corresponding CRP analysis method are proposed to distinguish faults within the arbiter PUF. Experimental results show that the diagnostic accuracy achieves 100.0% with good diagnostic resolution.
机译:物理不可渗透功能(PUF)在硬件安全领域具有广泛的应用前景。如果在制造期间在PUF中发生故障,则整个芯片的安全将受到威胁。故障诊断在产量学习过程中起着重要作用。然而,由于具有相同设计的不同制造的PUF具有不同的挑战 - 响应对(CRP),因此不能预测的,传统的故障诊断方法基于比较设计的无故障响应和芯片的失效响应不再是适合诊断PUF。因此,本文提出了对经典仲裁器PUF的故障诊断方法。粘连在故障和延迟故障中被考虑。基于仲裁器PUF的预期均匀性,提出了一种诊断挑战生成方法和相应的CRP分析方法,以区分仲裁器PUF内的故障。实验结果表明,诊断准确性达到100.0%,诊断分辨率良好。

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