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A Novel Relative Frequency Based Ring Oscillator Physical Unclonable Function

机译:一种基于相对频率的新型环形振荡器物理不可克隆函数

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Silicon physical unclonable function (PUF) exploits the random variation in the manufacturing process to extract unique information for each chip. Ring oscillator PUF (RO-PUF) is easy to implement for both ASIC and FPGA, and it becomes one of the most popular techniques to build a PUF. However, the unwanted systematic process variation degrades the randomness and uniqueness of RO-PUF. To reduce the effect of the systematic process variation and improve the randomness and uniqueness of RO-PUF, we propose a novel relative frequency based RO-PUF which exploits the differences between relative frequencies instead of absolute frequencies to generate unique secrets. Our proposed RO-PUF is lightweight, and it does not need extra hardware resources compared with the conventional RO-PUF. Experimental results on 193 FPGAs showed that the proposed RO-PUF could improve the average fractional hamming weight of a n-bit response from 25.34% to 50.40% and the average inter-die fractional hamming distance from 31.40% to 46.83%. Moreover, we propose a post-processing scheme to improve the reliability of the enrolled challenge response pairs, and it could reduce the error rate of the relative frequency based RO-PUF from 17.05% to 5.73% in the worst case.
机译:硅物理不可克隆功能(PUF)利用制造过程中的随机变化为每个芯片提取唯一信息。环形振荡器PUF(RO-PUF)易于在ASIC和FPGA上实现,并且已成为构建PUF的最受欢迎的技术之一。但是,不必要的系统过程变化会降低RO-PUF的随机性和唯一性。为了减少系统过程变化的影响并提高RO-PUF的随机性和唯一性,我们提出了一种基于相对频率的新型RO-PUF,该RO-PUF利用相对频率而非绝对频率之间的差异来产生独特的秘密。我们提出的RO-PUF是轻量级的,并且与传统的RO-PUF相比,它不需要额外的硬件资源。在193个FPGA上进行的实验结果表明,所提出的RO-PUF可以将n位响应的平均分数汉明权重从25.34%提高到50.40%,并且将芯片间平均分数汉明距离从31.40%提高到46.83%。此外,我们提出了一种后处理方案,以提高登记的挑战响应对的可靠性,在最坏的情况下,它可以将基于相对频率的RO-PUF的错误率从17.05%降低到5.73%。

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