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Quality evaluation of random numbers generated by chaotic samplingphase-locked loops

机译:混沌采样锁相环产生的随机数的质量评估

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The quality of generated random numbers is determined by the independence of consecutive numbers from one another. If the random numbers are used for enciphering plain text then correlation or periodicity destroys the security of the transmission. Chaotic signals are claimed to be suitable for secure communications; however, the quality of the generated sequences has not yet been studied. Physical changes in the parameters of the chaotic circuits used to generate random numbers may alter the parameters determining the chaotic behavior, i.e., the quality of the generated random numbers. This paper evaluates the quality of random sequences generated by chaotic sampling phase-locked loops (PLLs). It shows that micro-Feigenbaum diagrams, i.e., small periodic windows, can be observed in the chaotic PLLs proposed for random number generation. The run test, a much more sensitive tool than the autocorrelation function, is used to evaluate the quality of the random numbers. Because the results have shown that the quality of the generated numbers does not meet the requirements, a simple method is proposed to improve the performance of the chaotic PLLs
机译:产生的随机数的质量取决于连续数彼此之间的独立性。如果随机数用于加密纯文本,则相关性或周期性会破坏传输的安全性。混沌信号被认为适用于安全通信。然而,尚未研究所产生序列的质量。用于生成随机数的混沌电路的参数的物理变化可以改变确定混沌行为的参数,即所生成的随机数的质量。本文评估了由混沌采样锁相环(PLL)生成的随机序列的质量。它表明在提议用于随机数生成的混沌PLL中可以观察到微费恩鲍姆图,即小周期窗口。运行测试是一种比自相关函数更灵敏的工具,用于评估随机数的质量。由于结果表明生成的数字的质量不能满足要求,因此提出了一种简单的方法来改善混沌PLL的性能。

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