Kawamura Yoji, Nakao Hiroya
Department of Mathematical Science and Advanced Technology, Japan Agency for Marine-Earth Science and Technology, Yokohama 236-0001, Japan and Research and Development Center for Marine Biosciences, Japan Agency for Marine-Earth Science and Technology, Yokosuka 237-0061, Japan.
Department of Systems and Control Engineering, Tokyo Institute of Technology, Tokyo 152-8552, Japan.
Phys Rev E. 2016 Sep;94(3-1):032201. doi: 10.1103/PhysRevE.94.032201. Epub 2016 Sep 2.
We investigate common-noise-induced synchronization between two identical networks of coupled phase oscillators exhibiting fully locked collective oscillations. Using the collective phase description method for fully locked oscillators, we demonstrate that two noninteracting networks of coupled phase oscillators can exhibit in-phase synchronization between the networks when driven by weak common noise. We derive the Lyapunov exponent characterizing the relaxation time for synchronization and develop a method of obtaining the optimal input pattern of common noise to achieve fast synchronization. We illustrate the theory using three representative networks with heterogeneous, global, and local coupling. The theoretical results are validated by direct numerical simulations.
我们研究了在两个相同的耦合相位振荡器网络中,由共同噪声诱导的同步现象,这些网络呈现出完全锁定的集体振荡。使用针对完全锁定振荡器的集体相位描述方法,我们证明了两个非相互作用的耦合相位振荡器网络,在受到弱共同噪声驱动时,可以在网络之间表现出同相同步。我们推导了表征同步弛豫时间的李雅普诺夫指数,并开发了一种获得共同噪声最优输入模式以实现快速同步的方法。我们使用具有异构、全局和局部耦合的三个代表性网络来说明该理论。理论结果通过直接数值模拟得到验证。