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Digital Noise Generators Using One-Dimensional Chaotic Maps

机译:数字噪声发生器使用一维混沌映射

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This work shows how to improve the statistical distribution of signals produced by digital noise generators designed with one-dimensional (1-D) chaotic maps. It also shows that in a digital electronic design the piecewise linear chaotic maps (PWLCM) should be considered because they do not have stability islands in its chaotic behavior region, as it occurs in the case of the logistic map, which is commonly used to build noise generators. The design and implementation problems of the digital noise generators are analyzed and a solution is proposed. This solution relates the output of PWLCM, usually defined in the real numbers' domain, with a codebook of S elements, previously defined. The proposed solution scheme produces digital noise signals with a statistical distribution close to a uniform distribution. Finally, this work shows that it is possible to have control over the statistical distribution of the noise signal by selecting the control parameter of the PWLCM and using, as a design criterion, the bifurcation diagram.
机译:这项工作表明了如何改进由一维(1-D)混沌图设计的数字噪声发生器产生的信号的统计分布。它还表明,在数字电子设计中,应考虑分段线性混沌图(PWLCM),因为它们在其混沌行为区域中没有稳定性岛,因为它发生在逻辑图的情况下,其通常用于构建噪音发生器。分析了数字噪声发生器的设计和实现问题,提出了解决方案。该解决方案涉及PWLCM的输出,通常在实数“域中,具有先前定义的S元素的码本。所提出的解决方案方案产生数字噪声信号,其统计分布接近均匀分布。最后,该工作表明,通过选择PWLCM的控制参数和使用的分叉图,可以控制噪声信号的统计分布。

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