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通过共振微扰诱导混沌:理论与实验

Inducing chaos by resonant perturbations: theory and experiment.

作者信息

Lai Ying-Cheng, Kandangath Anil, Krishnamoorthy Satish, Gaudet John A, de Moura Alessandro P S

机构信息

Department of Electrical Engineering, Arizona State University, Tempe, Arizona 85287, USA.

出版信息

Phys Rev Lett. 2005 Jun 3;94(21):214101. doi: 10.1103/PhysRevLett.94.214101.

Abstract

We propose a scheme to induce chaos in nonlinear oscillators that either are by themselves incapable of exhibiting chaos or are far away from parameter regions of chaotic behaviors. Our idea is to make use of small, judiciously chosen perturbations in the form of weak periodic signals with time-varying frequency and phase, and to drive the system into a hierarchy of nonlinear resonant states and eventually into chaos. We demonstrate this method by using numerical examples and a laboratory experiment with a Duffing type of electronic circuit driven by a phase-locked loop. The phase-locked loop can track the instantaneous frequency and phase of the Duffing circuit and deliver resonant perturbations to generate robust chaos.

摘要

我们提出了一种在非线性振荡器中诱导混沌的方案,这些振荡器要么自身无法展现混沌,要么远离混沌行为的参数区域。我们的想法是利用精心选择的微弱周期信号形式的小扰动,其频率和相位随时间变化,并将系统驱动到非线性共振状态的层次结构中,最终进入混沌状态。我们通过数值示例和一个由锁相环驱动的达芬型电子电路的实验室实验来演示这种方法。锁相环可以跟踪达芬电路的瞬时频率和相位,并提供共振扰动以产生稳健的混沌。

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