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True-Randomness and Pseudo-Randomness in Ring Oscillator-Based True Random Number Generators

机译:基于环形振荡器的真实随机数生成器中的真随机性和伪随机性

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摘要

The paper deals with true random number generators employing oscillator rings, namely, with the one proposed by Sunar et al. in 2007 and enhanced by Wold and Tan in 2009. Our mathematical analysis shows that both architectures behave identically when composed of the same number of rings and ideal logic components. However, the reduction of the number of rings, as proposed by Wold and Tan, would inevitably cause the loss of entropy. Unfortunately, this entropy insufficiency is masked by the pseudo-randomness caused by XOR-ing clock signals having different frequencies. Our simulation model shows that the generator, using more than 18 ideal jitter-free rings having slightly different frequencies and producing only pseudo-randomness, will let the statistical tests pass. We conclude that a smaller number of rings reduce the security if the entropy reduction is not taken into account in post-processing. Moreover, the designer cannot avoid that some of rings will have the same frequency, which will cause another loss of entropy. In order to confirm this, we show how the attacker can reach a state where over 25% of the rings are locked and thus completely dependent. This effect can have disastrous consequences on the system security.
机译:本文讨论了采用振荡器环的真正随机数发生器,即由Sunar等人提出的。在2007年,Wold和Tan在2009年对其进行了增强。我们的数学分析表明,当由相同数量的环和理想逻辑组件组成时,两种体系结构的行为相同。但是,如Wold和Tan所建议的那样,环数的减少将不可避免地导致熵的损失。不幸的是,这种熵不足被具有不同频率的异或时钟信号引起的伪随机性掩盖了。我们的仿真模型表明,该发生器使用超过18个理想的无抖动环,这些环的频率略有不同,并且仅产生伪随机性,从而可以使统计测试通过。我们得出的结论是,如果在后期处理中不考虑熵的减少,则较少数量的环会降低安全性。而且,设计者无法避免某些环具有相同的频率,这将导致另一种熵损失。为了确认这一点,我们展示了攻击者如何达到超过25%的环被锁定并因此完全依赖的状态。这种影响可能会对系统安全性造成灾难性的后果。

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  • 来源
    《International journal of reconfigurable computing》 |2010年第3期|p.13.1-13.13|共13页
  • 作者单位

    CNRS, UMR5516, Laboratoire Hubert Curien, University de Lyon, 42000 Saint-Etienne, France;

    CNRS, UMR5516, Laboratoire Hubert Curien, University de Lyon, 42000 Saint-Etienne, France;

    CNRS, UMR5516, Laboratoire Hubert Curien, University de Lyon, 42000 Saint-Etienne, France;

    CNRS, UMR5516, Laboratoire Hubert Curien, University de Lyon, 42000 Saint-Etienne, France;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 00:37:18

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