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Experimental Validation of Multiple Attractors in a Simple Chaotic Circuit

机译:简单混沌电路中多个吸引子的实验验证

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摘要

In this paper, a simple jerk circuit that allows studying the dynamical behavior of a three-dimensional autonomous chaotic system with only one nonlinear term is further investigated by numerical simulations and experimental validation. Depending on a single tuning parameter, the chaotic system is theoretically studied using standard techniques such as equilibrium analysis, bifurcation diagram, and Lyapunov exponents. Subsequently, the circuit that models the chaotic system is implemented to validate theoretical prediction experimentally. Despite the simple structure of the jerk circuit, experimental study of Fourier spectra has shown that the jerk circuit displays complex dynamics characterized by periodic limit cycles and aperiodic strange attractors. In addition, the jerk circuit has exhibited a wide tuning range and experimental results have shown good agreement with theoretical prediction except for few cases where numerical simulation has failed to accurately match experimental results due to sensitivity to initial conditions which is a signature of chaotic nonlinear systems.
机译:在本文中,通过数值模拟和实验验证,进一步研究了一个简单的jerk电路,该电路允许研究仅含一个非线性项的三维自治混沌系统的动力学行为。根据单个调谐参数,利用平衡分析、分岔图和李雅普诺夫指数等标准技术对混沌系统进行了理论研究。随后,实现了混沌系统建模电路,对理论预测进行了实验验证。尽管jerk电路结构简单,但傅里叶谱的实验研究表明,jerk电路表现出复杂的动力学特性,其特征是周期极限环和非周期奇异吸引子。此外,jerk电路表现出很宽的调谐范围,实验结果与理论预测一致,除了少数情况下,由于对初始条件的敏感性,数值模拟未能准确匹配实验结果,这是混沌非线性系统的特征。

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