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Analytical Modeling of Continuous-Time Chaos Based Random Number Generators

机译:基于连续时间混沌的随机数发生器的分析建模

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This paper presents an analytical study about regular sampling of a continuous-time chaotic signal to make random number generators (RNGs). The procedure of choosing the sampling frequency to produce random bits is explored using the concept of autocorrelation. To mathematically describe the distribution and statistical properties of the underlying chaotic state variable, Kernel density estimation and polynomial regression methods have been studied. Applying these two methods, probability density function of the chaotic signal was defined analytically. Using the probability density function, bit distribution probability of the RNG has been investigated.
机译:本文介绍了关于定期采样连续时间混沌信号的分析研究,使随机数发生器(RNG)。使用自相关的概念探讨选择采样频率以产生随机位的过程。为了数学描述底层混沌状态变量的分布和统计特性,已经研究了内核密度估计和多项式回归方法。应用这两种方法,分析定义了混沌信号的概率密度函数。使用概率密度函数,研究了RNG的比特分布概率。

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