基于RO-PUF的安全片上密钥生成稳定技术

Van‐Phuc Hoang, Van-Toan Tran, Quang-Kien Trinh
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引用次数: 0

摘要

物理不可克隆功能(physical unclable Functions, puf)基于设备本身的物理特性,在保持设备足够唯一性的同时,提供了高可靠性。然而,在基于puf的实际实现中,提取的位串通常会出现不可避免的小波动。因此,puf可以用于芯片识别的应用,但不适用于严格要求精确生成数的应用。在这项工作中,我们提出了几种技术来稳定基于现有环振荡器(RO)-PUF电路的生成值,以便稳定的唯一数字可以直接用于高端硬件安全应用。详细地说,我们设计了一个专门的片上密钥生成电路,该电路反复采样RO频率值进行统计分析,并动态淘汰不稳定的比特,从而产生唯一且稳定的输出比特串。实验采用Xilinx Artix-7 FPGA器件测量的实际数据进行。生成的密钥被证明是相对稳定的,可以很容易地用于新兴的安全应用程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stabilizing Techniques for Secure On-chip Key Generation Based on RO-PUF
Based on intrinsic physical characteristics of devices, Physically Unclonable Functions (PUFs) provide the high reliability while maintaining the sufficient uniqueness. However, in the practical implementation based on PUFs, the extracted bit-string normally exhibits the unavoidable small fluctuation. Hence, PUFs can be used for the application of chip identification, but not suitable for the application that strictly requires an exact generated number. In this work, we propose several techniques to stabilize the generated value based on the existing Ring Oscillator (RO)-PUF circuit so that the stable unique number can be directly used for high-profile hardware security applications. In detail, we design a specialized on-chip key generation circuit that repeatedly samples the RO frequency values for statistical analysis and dynamically phases out the unstable bits, resulting in a unique and stable output bit-string. The experiments are conducted for the actual data measured from Xilinx Artix-7  FPGA devices. The generated key is proven to be relatively stable and can be readily used for the emerging security applications.
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