线性和前馈MUX puf的软响应生成和阈值策略

Chen Zhou, Saroj Satapathy, Yingjie Lao, K. Parhi, C. Kim
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引用次数: 19

摘要

在这项工作中,我们提出了基于MUX的物理不可克隆函数(puf)的基于概率的响应生成方案。与以前基于有限样本和粗糙标准的时间多数投票(TMV)来确定最终响应的实现相比,我们的设计可以使用简单的片上电路收集具有详细概率信息的软响应。采用精度较高的阈值有效区分稳定和不稳定挑战响应对(CRPs)。一个32nm测试芯片,包括线性和前馈MUX puf,用于概念验证。基于对硬件数据的详细分析,我们提出了几种用于确定稳定crp的增强阈值策略。例如,可以在注册阶段施加严格的阈值以选择良好的crp,而可以在正常的身份验证阶段使用宽松的阈值。实验数据表明,PUF响应具有高度的唯一性和随机性,这可归因于精心优化的电路布局。最后,将前馈MUX PUF的输出特性与同一32nm芯片的标准线性MUX PUF的输出特性进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soft Response Generation and Thresholding Strategies for Linear and Feed-Forward MUX PUFs
In this work, we present probability based response generation schemes for MUX based Physical Unclonable Functions (PUFs). Compared to previous implementations where temporal majority voting (TMV) based on limited samples and coarse criteria was utilized to determine final responses, our design can collect soft responses with detailed probability information using simple on-chip circuits. Thresholds with fine accuracy are applied to efficiently distinguish stable and unstable challenge response pairs (CRPs). A 32nm test chip including both linear and feed-forward MUX PUFs was implemented for concept verification. Based on a detailed analysis of the hardware data, we propose several enhanced thresholding strategies for determining stable CRPs. For instance, a stringent threshold can be imposed in enrollment phase for selecting good CRPs, while a relaxed threshold can be used during normal authentication phase. Experimental data shows a high degree of uniqueness and randomness in the PUF responses which can be attributed to the carefully optimized circuit layout. Finally, output characteristic of a feed-forward MUX PUF was compared to that of a standard linear MUX PUF from the same 32nm chip.
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