Physical Unclonable Function Using Programmable Delay Lines

Jiho Park, Heehun Yang, Donghun Lee, Hoyoung Yoo
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Abstract

In this paper, we propose a novel Ring-Oscillator Physical Unclonable Functions (RO-PUF) architecture using Programmable Delay Lines (PDL) in Field Programmable Gate Arrays (FPGA). Our proposed PUF uses PDL to change the propagation path inside the Look Up Table (LUT), thereby changing the output of RO. Depending on the output of the changed RO, different response outputs occur for the same RO-PUF architecture and challenge input. We have examined how the challenge-response pairs of the proposed PUF structure change according to the PDL. Additionally, we have analyzed the performance changes of the proposed PUF, finding that HDinter showed a maximum difference of 7. 1248%, and HDintra showed a maximum difference of 3.9731%. We confirm that the performance of the proposed PUF structure can vary depending on the PDL, and our research results will provide an optimal PUF structure solution to enhance the performance of PUF.
使用可编程延迟线的物理不可解功能
本文利用现场可编程门阵列(FPGA)中的可编程延迟线(PDL),提出了一种新型环振荡器物理不可解函数(RO-PUF)架构。我们提出的 PUF 使用 PDL 来改变查找表(LUT)内的传播路径,从而改变 RO 的输出。对于相同的 RO-PUF 架构和挑战输入,根据改变后的 RO 输出,会出现不同的响应输出。我们研究了拟议 PUF 结构的挑战-响应对如何根据 PDL 发生变化。此外,我们还分析了拟议 PUF 的性能变化,发现 HDinter 的最大差异为 7.1248%,HDintra 的最大差异为 3.9731%。我们证实,拟议 PUF 结构的性能会因 PDL 的不同而变化,我们的研究成果将为提高 PUF 性能提供最佳 PUF 结构解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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