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首页> 外文期刊>Nonlinear dynamics >Analog circuit implementation and synchronization of a system consisting of a van der Pol oscillator linearly coupled to a Duffing oscillator
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Analog circuit implementation and synchronization of a system consisting of a van der Pol oscillator linearly coupled to a Duffing oscillator

机译:由线性耦合到Duffing振荡器的van der Pol振荡器组成的系统的模拟电路实现和同步

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摘要

This paper deals with the analog circuit implementation and synchronization of a model consisting of a van der Pol oscillator coupled to a Duffing oscillator. The coupling between the two oscillators is set in a symmetrical way that linearly depends on the difference of the systems solutions (i.e., elastic coupling). The primary motivation of our investigations lays in the fact that coupled attractors of different types might serve as a good model for real systems in nature (e.g., electromechanical, physical, biological, or economic systems). The stability of fixed points is examined. The bifurcation structures of the system are analyzed with particular emphasis on the effects of nonlinearity. An appropriate electronic circuit (analog simulator) is proposed for the investigation of the dynamical behavior of the system. Correspondences are established between the coefficients of the system model and the components of the electronic circuit. A comparison of experimental and numerical results shows a very good agreement. By exploiting recent results on adaptive control theory, a controller is designed that enables both synchronization of two unidirectionally coupled systems and the estimation of unknown parameters of the drive system.
机译:本文讨论了由范德波尔振荡器和达芬振荡器组成的模型的模拟电路实现和同步。以线性方式取决于系统解的差异的对称方式来设置两个振荡器之间的耦合(即,弹性耦合)。我们研究的主要动机在于以下事实:不同类型的耦合吸引子可以作为自然中真实系统(例如,机电,物理,生物或经济系统)的良好模型。检查固定点的稳定性。分析了系统的分叉结构,并特别强调了非线性的影响。提出了一种合适的电子电路(模拟模拟器)来研究系统的动态行为。在系统模型的系数与电子电路的组件之间建立了对应关系。实验结果和数值结果的比较显示出很好的一致性。通过利用关于自适应控制理论的最新结果,设计了一种控制器,该控制器既可以实现两个单向耦合系统的同步,又可以估计驱动系统的未知参数。

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