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Order parameter analysis for low-dimensional behaviors of coupled phase-oscillators

机译:耦合相位振荡器的低维特性的阶次参数分析

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摘要

Coupled phase-oscillators are important models related to synchronization. Recently, Ott-Antonsen(OA) ansatz is developed and used to get low-dimensional collective behaviors in coupled oscillator systems. In this paper, we develop a simple and concise approach based on equations of order parameters, namely, order parameter analysis, with which we point out that OA ansatz is rooted in the dynamical symmetry of order parameters. With our approach the scope of OA ansatz is identified as two conditions, i.e., the limit of infinitely many oscillators and only three nonzero Fourier coefficients of the coupling function. Coinciding with each of the conditions, a distinctive system out of the scope is taken into account and discussed with the order parameter analysis. Two approximation methods are introduced respectively, namely the expectation assumption and the dominating-term assumption.
机译:耦合的相位振荡器是与同步相关的重要模型。最近,开发了Ott-Antonsen(OA)ansatz,并将其用于获得耦合振荡器系统中的低维集体行为。在本文中,我们基于阶数参数方程开发了一种简单明了的方法,即阶数参数分析,指出了OA ansatz植根于阶数参数的动态对称性。用我们的方法,将OA ansatz的范围确定为两个条件,即无限多个振荡器的极限和耦合函数的仅三个非零傅立叶系数。符合每个条件,将考虑超出范围的独特系统,并通过顺序参数分析进行讨论。分别介绍了两种近似方法,即期望假设和主导项假设。

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