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首页> 外文期刊>Journal of Nonlinear Dynamics >Experiment on Bifurcation and Chaos in Coupled Anisochronous Self-Excited Systems: Case of Two Coupled van der Pol-Duffing Oscillators
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Experiment on Bifurcation and Chaos in Coupled Anisochronous Self-Excited Systems: Case of Two Coupled van der Pol-Duffing Oscillators

机译:耦合异步自激系统的分叉与混沌实验:两个耦合范德波尔-达夫振荡器的案例

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摘要

The analog circuit implementation and the experimental bifurcation analysis of coupled anisochronous self-driven systems modelled by two mutually coupled van der Pol-Duffing oscillators are considered. The coupling between the two oscillators is set in a symmetrical way that linearly depends on the difference of their velocities (i.e., dissipative coupling). Interest in this problem does not decrease because of its significance and possible application in the analysis of different, biological, chemical, and electrical systems (e.g., coupled van der Pol-Duffing electrical system). Regions of quenching behavior as well as conditions for the appearance of Hopf bifurcations are analytically defined. The scenarios/routes to chaos are studied with particular emphasis on the effects of cubic nonlinearity (that is responsible for anisochronism of small oscillations). When monitoring the control parameter, various striking dynamic behaviors are found including period-doubling, symmetry-breaking, multistability, and chaos. An appropriate electronic circuit describing the coupled oscillator is designed and used for the investigations. Experimental results that are consistent with results from theoretical analyses are presented and convincingly show quenching phenomenon as well as bifurcation and chaos.
机译:考虑了由两个相互耦合的范德波尔-达芬振荡器建模的耦合异步自驱动系统的模拟电路实现和实验分叉分析。两个振荡器之间的耦合以对称方式设置,该方式线性地取决于它们的速度差(即,耗散耦合)。由于此问题的重要性以及在分析不同的生物,化学和电气系统(例如,耦合的范德波尔-达芬电气系统)中的可能应用,因此对该问题的兴趣并没有减少。分析定义了淬火行为的区域以及出现Hopf分叉的条件。研究了导致混乱的场景/路线,并特别强调了立方非线性的影响(这是造成小振荡的各向异性的原因)。监视控制参数时,会发现各种惊人的动态行为,包括周期倍增,对称破坏,多重稳定性和混乱。设计了描述耦合振荡器的适当电子电路,并将其用于研究。提出的实验结果与理论分析的结果一致,并且令人信服地显示出淬火现象以及分叉和混乱。

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