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Oscillating systems with cointegrated phase processes

机译:具有共聚合阶段过程的振荡系统

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We present cointegration analysis as a method to infer the network structure of a linearly phase coupled oscillating system. By defining a class of oscillating systems with interacting phases, we derive a data generating process where we can specify the coupling structure of a network that resembles biological processes. In particular we study a network of Winfree oscillators, for which we present a statistical analysis of various simulated networks, where we conclude on the coupling structure: the direction of feedback in the phase processes and proportional coupling strength between individual components of the system. We show that we can correctly classify the network structure for such a system by cointegration analysis, for various types of coupling, including uni-/bi-directional and all-to-all coupling. Finally, we analyze a set of EEG recordings and discuss the current applicability of cointegration analysis in the field of neuroscience.
机译:我们将协整分析作为推断线性相位耦合振荡系统的网络结构的方法。 通过定义具有相互作用阶段的一类振荡系统,我们得出了一种数据生成过程,在那里我们可以指定类似于生物过程的网络的耦合结构。 特别地,我们研究了一个WinFree振荡器网络,我们对各种模拟网络的统计分析,我们在耦合结构上得出结论:相位过程中的反馈方向和系统的各个部件之间的比例耦合强度。 我们表明我们可以通过协整类型分析来正确地对这样的系统进行分类,用于各种类型的耦合,包括单/双向和全部耦合。 最后,我们分析了一组EEG录音,并探讨了协整分析在神经科学领域的目前适用性。

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