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Pinning impulsive synchronization of complex dynamical networks

机译:固定复杂动态网络的脉冲同步

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In this paper, the problem of pinning impulsive synchronization for complex dynamical networks with directed or undirected but a strongly connected topology is investigated. To remedy this problem, we propose an efficient algorithm to find certain suitable nodes to be controlled via pinning and these selected nodes, in general, could be different at distinct impulsive time instants. The proposed algorithm guarantees the efficiency of the designed pinning impulsive strategy for the global exponential synchronization of state-coupled dynamical networks under an easily-verified condition. In other words, impulsive controllers and an efficient algorithm are designed to control a small fraction of the nodes, which successfully controls the whole dynamical network. Furthermore, we also estimate the upper bound of the number of pinning nodes, which is shown to be closely related to the impulsive intervals. The relationship implies that the required number of pinning nodes, which should be controlled for the successful control of the whole dynamical network, can be greatly reduced by reducing the impulses interval. Finally, simulations of scale-free and small-world networks are given to illustrate the effectiveness of the theoretical results.
机译:在本文中,研究了针对有向或无向但强连接拓扑的复杂动态网络固定脉冲同步的问题。为了解决这个问题,我们提出了一种有效的算法,以找到通过钉扎控制的某些合适的节点,并且这些选择的节点通常在不同的脉冲时间瞬间可能会不同。所提出的算法保证了在容易验证的条件下,状态耦合动态网络的全局指数同步所设计的固定脉冲策略的效率。换句话说,设计了脉冲控制器和高效算法来控制一小部分节点,从而成功控制了整个动态网络。此外,我们还估计了固定节点数的上限,这与脉冲间隔密切相关。这种关系意味着可以通过减小脉冲间隔来大大减少为成功控制整个动态网络而应控制的所需固定节点数。最后,给出了无标度和小世界网络的仿真,以说明理论结果的有效性。

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