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具有最优最大Lyapunov指数的多涡卷混沌振荡器的实验实现

Experimental realization of a multiscroll chaotic oscillator with optimal maximum Lyapunov exponent.

作者信息

Tlelo-Cuautle Esteban, Pano-Azucena Ana Dalia, Carbajal-Gomez Victor Hugo, Sanchez-Sanchez Mauro

机构信息

INAOE, Department of Electronics, 72480 Puebla, MEX, Mexico.

Universidad del Papaloapan, Loma Bonita, 68400 Oaxaca, MEX, Mexico.

出版信息

ScientificWorldJournal. 2014;2014:303614. doi: 10.1155/2014/303614. Epub 2014 Apr 16.

Abstract

Nowadays, different kinds of experimental realizations of chaotic oscillators have been already presented in the literature. However, those realizations do not consider the value of the maximum Lyapunov exponent, which gives a quantitative measure of the grade of unpredictability of chaotic systems. That way, this paper shows the experimental realization of an optimized multiscroll chaotic oscillator based on saturated function series. First, from the mathematical description having four coefficients (a, b, c, d1 ), an optimization evolutionary algorithm varies them to maximize the value of the positive Lyapunov exponent. Second, a realization of those optimized coefficients using operational amplifiers is given. Herein a, b, c, d1 are implemented with precision potentiometers to tune up to four decimals of the coefficients having the range between 0.0001 and 1.0000. Finally, experimental results of the phase-space portraits for generating from 2 to 10 scrolls are listed to show that their associated value for the optimal maximum Lyapunov exponent increases by increasing the number of scrolls, thus guaranteeing a more complex chaotic behavior.

摘要

如今,文献中已经提出了混沌振荡器的各种实验实现方式。然而,这些实现方式并未考虑最大Lyapunov指数的值,该指数给出了混沌系统不可预测程度的定量度量。因此,本文展示了基于饱和函数序列的优化多涡卷混沌振荡器的实验实现。首先,从具有四个系数(a、b、c、d1)的数学描述出发,一种优化进化算法对它们进行变化以最大化正Lyapunov指数的值。其次,给出了使用运算放大器实现这些优化系数的方法。在此,a、b、c、d1用精密电位器实现,以将系数调整到小数点后四位,范围在0.0001到1.0000之间。最后,列出了生成2到10个涡卷的相空间图的实验结果,以表明随着涡卷数量的增加,其最优最大Lyapunov指数的相关值会增加,从而保证了更复杂的混沌行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abf5/4030587/610279d4560b/TSWJ2014-303614.001.jpg

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