论文标题

增加复杂网络中的同步稳定性

Increasing the Synchronization Stability in Complex Networks

论文作者

Wu, Xian, Xi, Kaihua, Cheng, Aijie, Lin, Hai Xiang, van Schuppen, Jan H.

论文摘要

我们旨在提高耦合相位振荡器A的能力,当时系统受到随机干扰的影响。我们通过高斯噪声对干扰进行建模,并使用状态撞击安全域的边界(这是吸引力盆地的一个子集)的平均第一次达到时间,以测量同步稳定性。基于遇到高斯干扰的相位振荡器系统的不变概率分布,我们提出了一种优化方法,以增加平均第一次击打时间,从而增加同步稳定性。在此方法中,将新的用于同步稳定性的新指标定义为固定域中不存在状态的概率,这反映了所有系统参数的影响和干扰的强度。此外,通过这个新的指标,可以识别出可能导致具有高风险的对异步的边缘。一项案例研究表明,解决相应的优化问题并有效地识别出脆弱的边缘后,平均第一次打击时间大大增加。还发现,通过最大化顺序参数或相位凝聚力来优化同步可能会大大增加度量的值并减少平均第一次打击时间,从而降低同步稳定性。

We aim to increase the ability of a of coupled phase oscillators to maintain the synchronization when the system is affected by stochastic disturbances. We model the disturbances by Gaussian noise and use the mean first hitting time when the state hits the boundary of a secure domain, that is a subset of the basin of the attraction, to measure the synchronization stability. Based on the invariant probability distribution of a system of phase oscillators subject to Gaussian disturbances, we propose an optimization method to increase the mean first hitting time, and thus increase the synchronization stability. In this method, a new metric for the synchronization stability is defined as the probability of the state being absent from the secure domain, which reflects the impact of all the system parameters and the strength of the disturbances. Furthermore, by this new metric, one may identify those edges which may lead to desynchronization with a high risk. A case study shows that the mean first hitting time is dramatically increased after solving the corresponding optimization problems and the vulnerable edges are effectively identified. It is also found that optimizing the synchronization by maximizing the order parameter or the phase cohesiveness may dramatically increase the value of the metric and decrease the mean first hitting time, thus decrease the synchronization stability.

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