Analysis of dynamic behavior for Vanderpol oscillator under the single-input periodic signal

Jihong Song, W. Yi
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Abstract

This paper addresses the dynamic behavior of for Vandepol oscillator under the single-input periodic signal turbulent in non-Gaussian color noise environments, the methods of State space analysis methods are introduced to educe out the threshold of chaotic movement of non-linear system. It is found that the chaotic threshold is decided by the value of parameters in the Vandepol oscillator; the non-Gaussian color noise has little effect on the system's ultimate dynamic behavior when the oscillator is in the chaotic behavior. The parameters slight changes of single-input periodic signal will induce the great differently of dynamic behavior. Numerical results confirm our conclusion that the Vandepol oscillator is immune to zero mean square non-Gaussian color noise.
单输入周期信号下范德波尔振荡器的动态特性分析
本文研究了非高斯色噪声环境下单输入周期信号湍流作用下Vandepol振荡器的动力学行为,引入了状态空间分析方法来降低非线性系统混沌运动的阈值。研究发现,混沌阈值由Vandepol振子中参数的取值决定;当振子处于混沌状态时,非高斯色噪声对系统的最终动态行为影响不大。单输入周期信号参数的微小变化会引起系统动态特性的巨大差异。数值结果证实了Vandepol振荡器不受零均方非高斯色噪声的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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