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Improving the Robustness of Ring Oscillator TRNGs

机译:改善环形振荡器TRNG的坚固性

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A ring oscillator-based true-random number generator design (Rings design) was introduced in Sunar et al. [2007]. The design was rigorously analyzed under a simple mathematical model and its performance characteristics were established. In this article we focus on the practical aspects of the Rings design on a reconfigurable logic platform and determine their implications on the earlier analysis framework. We make recommendations for avoiding pitfalls in real-life implementations by considering ring interaction, transistor-level effects, narrow signal rejection, transmission line attenuation, and sampler bias. Furthermore, we present experimental results showing that changing operating conditions such as the power supply voltage or the operating temperature may affect the output quality when the signal is subsampled. Hence, an attacker may shift the operating point via a simple noninvasive influence and easily bias the TRNG output. Finally, we propose modifications to the design which significantly improve its robustness against attacks, alleviate implementation-related problems, and simultaneously improve its area, throughput, and power performance.
机译:Sunar等人介绍了一种基于环形振荡器的真随机数发生器设计(Rings设计)。 [2007]。在简单的数学模型下对该设计进行了严格的分析,并确定了其性能特征。在本文中,我们将重点放在可重构逻辑平台上的Rings设计的实践方面,并确定它们对早期分析框架的影响。我们建议通过考虑环相互作用,晶体管级效应,窄信号抑制,传输线衰减和采样器偏置来避免现实生活中的陷阱。此外,我们提供的实验结果表明,当对信号进行二次采样时,不断变化的工作条件(例如电源电压或工作温度)可能会影响输出质量。因此,攻击者可能会通过简单的非侵入性影响转移工作点,并容易使TRNG输出偏向。最后,我们提出对设计的修改,以显着提高其抵御攻击的鲁棒性,减轻与实现相关的问题,并同时提高其面积,吞吐量和电源性能。

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