The Genetic Algorithm for RNG in the Crypto Module of Ubiquitous Computing Environment

Jinkeun Hong, Kihong Kim
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Abstract

Yet, it is quite difficult to create an unbiased and stable random bit stream, as required for statistical randomness, when using a random generator with only a hardware component and in especially it has occur the drift phenomena of input power. Therefore if the randomness of output bit stream is beyond limits range, it is applied the regulation of input power range to take the output bit stream, through the evaluation of randomness by constant period of output bit stream. Accordingly, this paper proposes a method for continuous stabilizing the input power of a random number generator using genetic algorithm mechanism in crypto module hardware. As such, the proposed scheme is designed to reduce the statistical property of a biased bit stream and optimize the input power using genetic algorithm to a random number generator engine in crypto module engine for ubiquitous computing.
泛在计算环境下密码模块中RNG的遗传算法
然而,当使用只有硬件组件的随机发生器时,很难产生统计随机性所要求的无偏和稳定的随机比特流,特别是它会发生输入功率的漂移现象。因此,当输出比特流的随机性超出限定范围时,采用输入功率范围的调节来取输出比特流,通过输出比特流的定周期来评价随机性。据此,本文提出了一种利用遗传算法机制在加密模块硬件中实现随机数发生器输入功率连续稳定的方法。因此,该方案旨在降低有偏比特流的统计特性,并利用遗传算法优化输入功率,以实现普适化计算的密码模块引擎中的随机数生成引擎。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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