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An Assessment of the Environmental Noise Effects on the Performance of Configurable based ROPUFs

机译:评估环境噪声对可配置基于ROPUF的性能的影响

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Silicon Physical Unclonable Functions (SPUFs) are security primitives that are embodied in a chip and exploit the manufacturing process variations of the Integrated Circuits (ICs) to extract unique secrets for chip authentication and cryptographic key generations. Due to their simple implementation and high performance, Ring Oscillator PUFs (ROPUFs) are one of the most suitable security solutions for silicon technology devices including ASICs and FPGAs. As far as our knowledge goes, there is no comprehensive research that assesses the impact of varying environmental conditions on the performance of controlled-inverter Configurable ROPUFs (c-ROPUF). In this paper, we use our previously proposed c-ROPUF design to analyze RO sample frequencies that are extracted from five Spartan 3E FPGAs (90 nm) at five different temperatures & voltages. The experimental results show that RO frequencies follow a fixed pattern which shows that environmental variation effects are uniformly distributed on the individual ROs throughout the FPGA chips. However, RO frequencies are exposed to high bit flips percentage due to voltage variations compared to temperature variations.
机译:Silicon物理不可渗透功能(SPUF)是在芯片中体现的安全性原语,利用集成电路(IC)的制造过程变体,以提取芯片认证和加密密钥代的唯一秘密。由于其简单的实施和高性能,环振荡器PUF(ROPUFS)是包括ASIC和FPGA在内的硅技术设备最适合的安全解决方案之一。就我们的知识而言,没有全面的研究,评估不同环境条件对受控逆变器可配置ROPUF(C-ROPUF)的性能的影响。在本文中,我们使用先前提出的C-ROPUF设计来分析从五个不同温度和电压中从五个斯巴达3E FPGA(90nm)中提取的RO样本频率。实验结果表明,RO频率遵循固定图案,表明环境变异效应均匀地分布在整个FPGA芯片上的各个RO上。然而,由于与温度变化相比,RO频率暴露于高位翻转引起的百分比。

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