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MVL-PUFs: multiple-valued logic physical unclonable functions

机译:MVL-PUF:多值逻辑物理不可克隆函数

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摘要

Physical unclonable functions (PUFs) are promising hardware security primitives suitable for protecting resource-constrained devices. In this paper, we propose to use multiple-valued logic (MVL) for implementing hardware-efficient PUF integrated circuits. We show that by extracting device mismatch in either current-mode or voltage-mode MVL comparators, the proposed PUF circuits can generate unique and reliable chip identifiers. In order to stabilize PUF responses, we utilize multiple thresholds of MVL comparators, whose outputs are selected and combined according to the sensed temperature. To reduce power and further enhance reliability, the PUF circuits are biased in the weak-inversion region. Evaluation results show that the proposed MVL-PUFs are unique and reliable over a wide temperature range. In addition, they significantly improve the energy efficiency of the state-of-the-art PUFs. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:物理不可克隆功能(PUF)是有前途的硬件安全原语,适用于保护资源受限的设备。在本文中,我们建议使用多值逻辑(MVL)来实现具有硬件效率的PUF集成电路。我们表明,通过在电流模式或电压模式MVL比较器中提取器件失配,建议的PUF电路可以生成唯一且可靠的芯片标识符。为了稳定PUF响应,我们利用MVL比较器的多个阈值,根据检测到的温度选择并组合其输出。为了降低功率并进一步提高可靠性,PUF电路被偏置在弱反相区域中。评估结果表明,所提出的MVL-PUF在很宽的温度范围内都是独特且可靠的。此外,它们显着提高了最新型PUF的能源效率。版权所有(c)2016 John Wiley&Sons,Ltd.

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