Guan Shuguang, Wang Xingang, Gong Xiaofeng, Li Kun, Lai C-H
Temasek Laboratories, National University of Singapore, Singapore.
Chaos. 2009 Mar;19(1):013130. doi: 10.1063/1.3087531.
In this paper, we numerically investigate the development of generalized synchronization (GS) on typical complex networks, such as scale-free networks, small-world networks, random networks, and modular networks. By adopting the auxiliary-system approach to networks, we observe that GS generally takes place in oscillator networks with both heterogeneous and homogeneous degree distributions, regardless of whether the coupled chaotic oscillators are identical or nonidentical. We show that several factors, such as the network topology, the local dynamics, and the specific coupling strategies, can affect the development of GS on complex networks.
在本文中,我们对典型复杂网络(如无标度网络、小世界网络、随机网络和模块化网络)上广义同步(GS)的发展进行了数值研究。通过采用网络辅助系统方法,我们观察到,无论耦合混沌振子是否相同,GS通常都会在具有异构和同构度分布的振子网络中发生。我们表明,诸如网络拓扑、局部动力学和特定耦合策略等几个因素会影响复杂网络上GS的发展。