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From Physical to Stochastic Modeling of a TERO-Based TRNG

机译:从物理模型到基于TERO的TRNG的随机建模

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摘要

Security in random number generation for cryptography is closely related to the entropy rate at the generator output. This rate has to be evaluated using an appropriate stochastic model. The stochastic model proposed in this paper is dedicated to the transition effect ring oscillator (TERO)-based true random number generator (TRNG) proposed by Varchola and Drutarovsky (in: Cryptographic hardware and embedded systems (CHES), 2010, Springer, 2010). The advantage and originality of this model are that it is derived from a physical model based on a detailed study and on the precise electrical description of the noisy physical phenomena that contribute to the generation of random numbers. We compare the proposed electrical description with data generated in two different technologies: TERO TRNG implementations in 40 and 28nm CMOS ASICs. Our experimental results are in very good agreement with those obtained with both the physical model of TERO's noisy behavior and the stochastic model of the TERO TRNG, which we also confirmed using the AIS 31 test suites.
机译:密码术随机数生成的安全性与生成器输出端的熵率密切相关。必须使用适当的随机模型评估该比率。本文提出的随机模型专用于Varchola和Drutarovsky提出的基于过渡效应环形振荡器(TERO)的真随机数生成器(TRNG)(in:加密硬件和嵌入式系统(CHES),2010,Springer,2010) 。该模型的优点和独创性是,它是基于对详细研究和对有助于生成随机数的嘈杂物理现象的精确电气描述而得出的物理模型得出的。我们将拟议的电气描述与通过两种不同技术生成的数据进行比较:40和28nm CMOS ASIC中的TERO TRNG实现。我们的实验结果与TERO的噪声行为的物理模型和TERO TRNG的随机模型所获得的结果非常吻合,我们也使用AIS 31测试套件进行了证实。

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