Complex Dynamics and Synchronization in a System of Magnetically Coupled Colpitts Oscillators

L. Kana, A. Fomethe, H. Fotsin, E. T. Wembe, A. Moukengue
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引用次数: 13

Abstract

We propose the use of a simple, cheap, and easy technique for the study of dynamic and synchronization of the coupled systems: effects of the magnetic coupling on the dynamics and of synchronization of two Colpitts oscillators (wireless interaction). We derive a smooth mathematical model to describe the dynamic system. The stability of the equilibrium states is investigated. The coupled system exhibits spectral characteristics such as chaos and hyperchaos in some parameter ranges of the coupling. The numerical exploration of the dynamics system reveals various bifurcations scenarios including period-doubling and interior crisis transitions to chaos. Moreover, various interesting dynamical phenomena such as transient chaos, coexistence of solution, and multistability (hysteresis) are observed when the magnetic coupling factor varies. Theoretical reasons for such phenomena are provided and experimentally confirmed with practical measurements in a wireless transfer.
磁耦合Colpitts振子系统的复杂动力学与同步
我们建议使用一种简单、廉价和容易的技术来研究耦合系统的动态和同步:磁耦合对两个Colpitts振荡器的动态和同步的影响(无线交互)。我们推导了一个光滑的数学模型来描述动态系统。研究了平衡态的稳定性。耦合系统在耦合的某些参数范围内表现出混沌和超混沌等光谱特征。动力学系统的数值探索揭示了各种分岔情况,包括周期加倍和内部危机过渡到混沌。此外,当磁耦合系数变化时,观察到各种有趣的动力学现象,如瞬态混沌、解的共存和多稳定性(迟滞)。给出了这种现象的理论原因,并通过无线传输中的实际测量进行了实验证实。
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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