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Exploiting Oscillator Arrays As Randomness Sources for Cryptographic Applications

机译:利用振荡器阵列作为密码学应用的随机性源

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This paper shows how arrays of coupled resonant oscillators can provide wildly disordered phase responses corresponding to nonsynchronized regimes. The unpredictability of their time response makes oscillator arrays attractive randomness sources for cryptographic applications. We describe a possible implementation of a random number generator (RNG) combining the proposed randomness source with a few low cost elements needed for bit stream generation. Several bit stream sequences are simulated with a numerically efficient phase-domain model able to include oscillator phase noise and parameters variability. The randomness of the generated bit streams are checked with the tests provided by the National Institute of Standards and Technology. Our results show that the statistical properties of the proposed RNG are indeed resilient to temperature-induced thermal noise variations as well as to the statistical uncertainty of oscillating frequencies and coupling strengths.
机译:本文展示了耦合谐振振荡器的阵列如何能够提供与非同步状态相对应的严重无序的相位响应。它们的时间响应的不可预测性使振荡器阵列成为密码学应用中有吸引力的随机性源。我们描述了将提议的随机性源与比特流生成所需的一些低成本元素相结合的随机数生成器(RNG)的可能实现。使用数值有效的相域模型对几个比特流序列进行仿真,该模型可以包含振荡器相位噪声和参数可变性。使用美国国家标准技术研究所提供的测试检查生成的比特流的随机性。我们的结果表明,所提出的RNG的统计特性确实可以抵抗温度引起的热噪声变化以及振荡频率和耦合强度的统计不确定性。

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