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A pair selection algorithm for robust RO-PUF against environmental variations and aging

机译:一种对环境变化和老化鲁棒RO-PUF的对选择算法

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Physically Unclonable Functions (PUFs) have emerged as a promising security primitive for low-cost authentication and cryptographic key generation. However, PUF stability with respect to temporal variations still limits its utility and widespread acceptance. Previous techniques in the literature have focused on improving PUF robustness against voltage and temperature variations, but the issues associated with aging have been largely neglected. In this paper, we propose a reliable pair selection algorithm (RePa) that can generate reliable keys from an RO-PUF under aging, voltage, and temperature variations. The RePa approach selects RO pairs with both initial frequency difference and aging rate/slope in mind. The aging slope is predicted by exploiting correlation that exists between frequency variation with respect to voltage and frequency variation with respect to aging. We evaluate RePa with simulations to show that it achieves significant improvement over the current state of the art in terms of reliability and cost. The proposed approach can achieve ~ 3.0x more robust key with only ~ 2.3x more ROs required than the conventional RO-PUF pair selection for the same key size.
机译:物理上不可分类的功能(PUF)已成为低成本认证和加密密钥生成的有希望的安全原态。然而,对时间变化的PUF稳定性仍然限制其实用性和广泛的接受。文献中的先前技术集中于改善对电压和温度变化的PUF鲁棒性,但与老化相关的问题在很大程度上被忽略了。在本文中,我们提出了一种可靠的对选择算法(REPA),其可以在老化,电压和温度变化下从RO-PUF产生可靠的键。 REPA方法选择RO对,初始频率差和老化率/斜率。通过利用在相对于老化的电压和频率变化之间存在的频率变化之间存在的相关性来预测老化斜率。我们通过模拟评估REPA,以表明它在可靠性和成本方面实现了对现有技术的显着改善。所提出的方法可以实现〜3.0x更强大的键,只有〜2.3倍的ROS比传统的RO-PUF对选择相同的键尺寸。

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