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首页> 外文期刊>International journal of nonlinear sciences and numerical simulation >On the Relation between the Number of Scrolls and the Lyapunov Exponents in PWL-functions-based n-Scroll Chaotic Oscillators
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On the Relation between the Number of Scrolls and the Lyapunov Exponents in PWL-functions-based n-Scroll Chaotic Oscillators

机译:基于PWL函数的n涡卷混沌振荡器中涡卷数与Lyapunov指数之间的关系

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摘要

A challenge in the physical design of n-scroll attractors is to generate a large number of scrolls. However, an open question is: Does the large number of scrolls determine a better chaotic behavior? We present a partial answer to this question by computing the Lyapunov exponents for piecewise-linear (PWL) functions based on n-scroll third order chaotic oscillators, namely: Zhong modified Chua's circuit, Yu modified Chua's circuit, saturated function series based chaotic oscillator, and generalized Chua's circuit with saw-tooth function. Three different integration methods (forward Euler, fourth order Runge Kutta and Matlab ODE 45) are used in order to show that the positive Lyapunov exponent is not significantly incremented in relation with the number of scrolls.
机译:n涡卷吸引器的物理设计面临的挑战是生成大量涡卷。但是,一个开放的问题是:大量的滚动是否确定更好的混沌行为?通过计算基于n滚动三阶混沌振荡器的分段线性(PWL)函数的Lyapunov指数,我们给出了对该问题的部分答案,即:中修改的蔡氏电路,余修改的蔡氏电路,基于饱和函数序列的混沌振荡器,并推广了具有锯齿功能的蔡氏电路。为了表明正Lyapunov指数并未随滚动数显着增加,使用了三种不同的积分方法(前向Euler,四阶Runge Kutta和Matlab ODE 45)。

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