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Entrainment and synchronization in networks of Rayleigh–van der Pol oscillators with diffusive and Haken–Kelso–Bunz couplings

机译:具有扩散和Haken-Kelso-Bunz耦合的Rayleigh-van der Pol振荡器网络中的夹带和同步

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摘要

We analyze a network of non-identical Rayleigh–van der Pol (RvdP) oscillators interconnected through either diffusive or nonlinear coupling functions. The work presented here extends existing results on the case of two nonlinearly coupled RvdP oscillators to the problem of considering a network of three or more of them. Specifically, we study synchronization and entrainment in networks of heterogeneous RvdP oscillators and contrast the effects of diffusive linear coupling strategies with the nonlinear Haken–Kelso–Bunz coupling, originally introduced to study human bimanual experiments. We show how convergence of the error among the nodes’ trajectories toward a bounded region is possible with both linear and nonlinear coupling functions. Under the assumption that the network is connected, simple, and undirected, analytical results are obtained to prove boundedness of the error when the oscillators are coupled diffusively. All results are illustrated by way of numerical examples and compared with the experimental findings available in the literature on synchronization of people rocking chairs, confirming the effectiveness of the model we propose to capture some of the features of human group synchronization observed experimentally in the previous literature.
机译:我们分析了通过扩散或非线性耦合函数相互连接的不同瑞利-范德波尔(RvdP)振荡器的网络。此处介绍的工作将关于两个非线性耦合RvdP振荡器的现有结果扩展到考虑其中三个或更多网络的问题。具体来说,我们研究异质RvdP振荡器网络中的同步和夹带,并将扩散线性耦合策略的影响与非线性Haken-Kelso-Bunz耦合(最初用于研究人类双手实验)进行对比。我们展示了线性和非线性耦合函数如何使节点轨迹之间的误差收敛到有界区域。在网络是连通的,简单且无方向的假设下,获得分析结果以证明当扩散扩散耦合振荡器时误差的有界性。所有结果均通过数值示例进行了说明,并与文献中有关人摇椅同步的实验结果进行了比较,证实了我们提出的该模型的有效性,以捕获先前文献中通过实验观察到的人类群体同步的某些特征。

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