School of Sciences, China University of Mining and Technology, Xuzhou 221008, People's Republic of China.
Chaos. 2012 Jun;22(2):023152. doi: 10.1063/1.4731265.
In this paper, the finite-time stochastic outer synchronization between two different complex dynamical networks with noise perturbation is investigated. By using suitable controllers, sufficient conditions for finite-time stochastic outer synchronization are derived based on the finite-time stability theory of stochastic differential equations. It is noticed that the coupling configuration matrix is not necessary to be symmetric or irreducible, and the inner coupling matrix need not be symmetric. Finally, numerical examples are examined to illustrate the effectiveness of the analytical results. The effect of control parameters on the settling time is also numerically demonstrated.
本文研究了具有噪声干扰的两个不同复杂动力网络的有限时间随机外同步问题。通过使用合适的控制器,基于随机微分方程的有限时间稳定性理论,得到了有限时间随机外同步的充分条件。需要注意的是,耦合配置矩阵不一定是对称的或不可约的,内部耦合矩阵也不一定是对称的。最后,通过数值实例验证了分析结果的有效性。还通过数值实验展示了控制参数对调整时间的影响。