IEEE Trans Cybern. 2018 Jan;48(1):240-252. doi: 10.1109/TCYB.2016.2630703. Epub 2016 Dec 6.
In this paper, the finite-time and fixed-time cluster synchronization problem for complex networks with or without pinning control are discussed. Finite-time (or fixed-time) synchronization has been a hot topic in recent years, which means that the network can achieve synchronization in finite-time, and the settling time depends on the initial values for finite-time synchronization (or the settling time is bounded by a constant for any initial values for fixed-time synchronization). To realize the finite-time and fixed-time cluster synchronization, some simple distributed protocols with or without pinning control are designed and the effectiveness is rigorously proved. Several sufficient criteria are also obtained to clarify the effects of coupling terms for finite-time and fixed-time cluster synchronization. Especially, when the cluster number is one, the cluster synchronization becomes the complete synchronization problem; when the network has only one node, the coupling term between nodes will disappear, and the synchronization problem becomes the simplest master-slave case, which also includes the stability problem for nonlinear systems like neural networks. All these cases are also discussed. Finally, numerical simulations are presented to demonstrate the correctness of obtained theoretical results.
本文讨论了带有或不带有钉扎控制的复杂网络的有限时间和固定时间簇同步问题。有限时间(或固定时间)同步是近年来的一个热门话题,这意味着网络可以在有限时间内实现同步,并且同步时间取决于有限时间同步的初始值(或者对于任何初始值,固定时间同步的 settling 时间都是有界的)。为了实现有限时间和固定时间簇同步,设计了带有或不带有钉扎控制的一些简单分布式协议,并严格证明了其有效性。还获得了几个充分条件,以阐明耦合项对有限时间和固定时间簇同步的影响。特别是,当簇数为 1 时,簇同步变为完全同步问题;当网络只有一个节点时,节点之间的耦合项将消失,同步问题变为最简单的主从情况,其中还包括神经网络等非线性系统的稳定性问题。所有这些情况也都进行了讨论。最后,给出了数值模拟结果,以验证所得到的理论结果的正确性。