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范德波尔振荡器分层加权网络的动力学

Dynamics of hierarchical weighted networks of van der Pol oscillators.

作者信息

Monsivais-Velazquez Daniel, Bhattacharya Kunal, Barrio Rafael A, Maini Philip K, Kaski Kimmo K

机构信息

Department of Computer Science, Aalto University School of Science, 00076 Helsinki, Finland.

Department of Industrial Engineering and Management, Aalto University School of Science, 00076 Helsinki, Finland.

出版信息

Chaos. 2020 Dec;30(12):123146. doi: 10.1063/5.0010638.

Abstract

We investigate the dynamics of regular fractal-like networks of hierarchically coupled van der Pol oscillators. The hierarchy is imposed in terms of the coupling strengths or link weights. We study the low frequency modes, as well as frequency and phase synchronization, in the network by a process of repeated coarse-graining of oscillator units. At any given stage of this process, we sum over the signals from the oscillator units of a clique to obtain a new oscillating unit. The frequencies and the phases for the coarse-grained oscillators are found to progressively synchronize with the number of coarse-graining steps. Furthermore, the characteristic frequency is found to decrease and finally stabilize to a value that can be tuned via the parameters of the system. We compare our numerical results with those of an approximate analytic solution and find good qualitative agreement. Our study on this idealized model shows how oscillations with a precise frequency can be obtained in systems with heterogeneous couplings. It also demonstrates the effect of imposing a hierarchy in terms of link weights instead of one that is solely topological, where the connectivity between oscillators would be the determining factor, as is usually the case.

摘要

我们研究了由分层耦合的范德波尔振荡器构成的规则分形网络的动力学特性。这种分层是根据耦合强度或链路权重来设定的。我们通过对振荡器单元进行重复粗粒化的过程,研究了网络中的低频模式以及频率和相位同步情况。在这个过程的任何给定阶段,我们对一个团簇中振荡器单元的信号进行求和,以得到一个新的振荡单元。结果发现,粗粒化振荡器的频率和相位会随着粗粒化步骤的数量逐渐同步。此外,特征频率会降低并最终稳定到一个可以通过系统参数进行调节的值。我们将数值结果与近似解析解的结果进行了比较,发现定性上吻合良好。我们对这个理想化模型的研究表明,在具有异质耦合的系统中如何获得具有精确频率的振荡。它还展示了在链路权重方面施加分层的效果,而不是仅基于拓扑结构的分层,在拓扑结构中,振荡器之间的连接性通常是决定性因素。

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