闪烁噪声对基于环形振荡器的 TRNG 的影响

L. Benea, Mikael Carmona, Viktor Fischer, Florian Pebay-Peyroula, Romain Wacquez
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引用次数: 0

摘要

环形振荡器(RO)通常用于真随机数发生器(TRNG)。其作为随机性源的抖动时钟信号来自热噪声和闪烁噪声。热噪声抖动通常被用作随机性的主要来源,而闪烁噪声抖动则由于其自相关性而不被用作随机性来源。这项工作旨在定性地解决 TRNG 中闪烁噪声的影响问题,因为在较新的技术节点中,闪烁噪声的影响越来越大。为此,我们建立了一个 RO 行为模型,该模型可生成相当于抖动 RO 信号的时间序列。然后用它来生成基本 RO-TRNG 的输出。尽管存在一般预期,但当闪烁噪声的振幅增大时,输出比特流内部的自相关性会降低。模型显示,这种效应是由第二个振荡器对抖动信号进行采样造成的,它掩盖了绝对抖动的行为,导致感知相位的重置,并抑制了任何记忆效应。在输出熵率相同的情况下,将闪烁噪声作为合法噪声源可将 TRNG 输出比特率提高四倍。这一观察结果为建立更高效的 RO-TRNG 随机模型开辟了新的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of the Flicker Noise on the Ring Oscillator-based TRNGs
Ring Oscillators (RO) are often used in true random number generators (TRNG). Their jittered clock signal, used as randomness source, originates from thermal and flicker noises. While thermal noise jitter is generally used as the main source of randomness, flicker noise jitter is not due to its autocorrelation. This work aims at qualitatively settling the issue of the influence of flicker noise in TRNGs, as its impact increases in newer technology nodes. For this, we built a RO behavioural model, which generates time series equivalent to a jittered RO signal. It is then used to generate the output of an elementary RO-TRNG. Despite general expectations, the autocorrelation inside the output bit stream is reduced when the amplitude of flicker noise increases. The model shows that this effect is caused by the sampling of the jittered signal by the second oscillator, which hides the behaviour of the absolute jitter, causes resetting of the perceived phase, and suppresses any memory effect. The inclusion of flicker noise as a legitimate noise source can increase the TRNG output bit rate by a factor of four for the same output entropy rate. This observation opens new perspectives towards more efficient stochastic models of the RO-TRNGs.
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