Institute for Research in Electronics and Applied Physics, University of Maryland, College Park, Maryland 20742, USA.
Chaos. 2010 Dec;20(4):043142. doi: 10.1063/1.3530425.
We present and experimentally demonstrate a technique for achieving and maintaining a global state of identical synchrony of an arbitrary network of chaotic oscillators even when the coupling strengths are unknown and time-varying. At each node an adaptive synchronization algorithm dynamically estimates the current strength of the net coupling signal to that node. We experimentally demonstrate this scheme in a network of three bidirectionally coupled chaotic optoelectronic feedback loops and we present numerical simulations showing its application in larger networks. The stability of the synchronous state for arbitrary coupling topologies is analyzed via a master stability function approach.
我们提出并实验证明了一种技术,即使在耦合强度未知且时变的情况下,也能实现和维持任意混沌振荡器网络的全局同步状态。在每个节点上,自适应同步算法动态估计当前网络耦合信号对该节点的强度。我们在一个由三个双向耦合的混沌光电反馈环组成的网络中实验验证了该方案,并通过主稳定性函数方法分析了任意耦合拓扑的同步状态稳定性。