论文标题

单节点的小更改可以改变全局网络动力学

Small changes at single nodes can shift global network dynamics

论文作者

Rossi, Kalel L., Budzinski, Roberto C., Boaretto, Bruno R. R., Muller, Lyle E., Feudel, Ulrike

论文摘要

了解系统行为对参数变化的敏感性对于许多应用程序至关重要。可能需要这种敏感性 - 例如,在大脑中,大脑,其中大量的动态曲目,尤其是不同的同步模式,至关重要 - 或可能是不希望的 - 例如在功率网中,而对同步的破坏可能会导致停电。在这项工作中,我们表明,相位振荡器网络的动力学可以使对单元的参数或连接中所做的更改具有非常大而复杂的敏感性 - 即使对单个单元的参数进行的修改也可以从根本上改变网络的全局动力学,以不可预测的方式改变网络的全局动力学。结果,每种修饰都导致相位同步的不同路径,沿该路径表现为大波动。这种动态的可锻造性发生在广泛的参数区域,围绕网络的两个过渡到相位同步。一种过渡是通过增加单元之间的耦合强度来引起的,而另一个转变是通过增加长距离连接的流行而引起的。具体而言,我们研究了在瓦特 - 骨中连接的库拉莫托相振荡器或距离依赖性拓扑结合的,以分析沿相位同步路径的波动的统计特性。我们认为,正如先前的研究和相变理论所表明的那样,动态延展性的增加是一种普遍现象。

Understanding the sensitivity of a system's behavior with respect to parameter changes is essential for many applications. This sensitivity may be desired - for instance in the brain, where a large repertoire of different dynamics, particularly different synchronization patterns, is crucial - or may be undesired - for instance in power grids, where disruptions to synchronization may lead to blackouts. In this work, we show that the dynamics of networks of phase oscillators can acquire a very large and complex sensitivity to changes made in either their units' parameters or in their connections - even modifications made to a parameter of a single unit can radically alter the global dynamics of the network in an unpredictable manner. As a consequence, each modification leads to a different path to phase synchronization manifested as large fluctuations along that path. This dynamical malleability occurs over a wide parameter region, around the network's two transitions to phase synchronization. One transition is induced by increasing the coupling strength between the units, and another is induced by increasing the prevalence of long-range connections. Specifically, we study Kuramoto phase oscillators connected under either Watts-Strogatz or distance-dependent topologies to analyze the statistical properties of the fluctuations along the paths to phase synchrony. We argue that this increase in the dynamical malleability is a general phenomenon, as suggested by both previous studies and the theory of phase transitions.

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