Blakely Jonathan N, Pruitt Matthew W, Corron Ned J
U. S. Army Research, Engineering, and Development Command, AMSRD-AMR-WS-ST, Redstone Arsenal, Alabama 35898, USA.
Chaos. 2008 Mar;18(1):013117. doi: 10.1063/1.2840778.
We introduce a new method for predicting characteristics of the synchronized state achieved by a wide class of unidirectional coupling schemes. Specifically, we derive a transfer function from the coupling model that provides estimates of the correlation between the drive and response waveforms, and of the time shift (i.e., lag or anticipation) of the synchronized state. To demonstrate the method, we apply it to a simulated system of coupled Rossler oscillators as well as to an experimental system of coupled chaotic electronic circuits. Finally, we show that the transfer function can be exploited to design novel coupling schemes that significantly improve the correlation and increase the maximum achievable time shift.
我们介绍了一种新方法,用于预测由一大类单向耦合方案所实现的同步状态的特征。具体而言,我们从耦合模型中推导了一个传递函数,该函数可提供驱动波形与响应波形之间的相关性估计,以及同步状态的时间偏移(即滞后或超前)估计。为了演示该方法,我们将其应用于耦合罗斯勒振荡器的模拟系统以及耦合混沌电子电路的实验系统。最后,我们表明,该传递函数可用于设计新颖的耦合方案,从而显著提高相关性并增加可实现的最大时间偏移。