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Synchronization Control for A Class of Discrete Time-Delay Complex Dynamical Networks: A Dynamic Event-Triggered Approach

机译:一类离散时滞复杂动态网络的同步控制:一种动态事件触发方法

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摘要

This paper is concerned with the synchronization control problem for a class of discrete time-delay complex dynamical networks under a dynamic event-triggered mechanism. For the efficiency of energy utilization, we make the first attempt to introduce a dynamic event-triggering strategy into the design of synchronization controllers for complex dynamical networks. A new discrete-time version of the dynamic event-triggering mechanism is proposed in terms of the absolute errors between control input updates. By constructing an appropriate Lyapunov functional, the dynamics of each network node combined with the introduced event-triggering mechanism are first analyzed, and a sufficient condition is then provided under which the synchronization error dynamics is exponentially ultimately bounded. Subsequently, a set of the desired synchronization controllers is designed by solving a matrix inequality. Finally, a simulation example is provided to verify the effectiveness of the proposed dynamic event-triggered synchronization control scheme.
机译:本文研究一种基于事件触发机制的离散时滞复杂动态网络的同步控制问题。为了提高能源利用效率,我们首次尝试将动态事件触发策略引入复杂动态网络的同步控制器设计中。针对控制输入更新之间的绝对误差,提出了动态事件触发机制的新离散时间版本。通过构造适当的Lyapunov功能,首先分析每个网络节点与引入的事件触发机制相结合的动态,然后提供一个充分的条件,在该条件下,最终以同步方式指数同步限制误差动态。随后,通过求解矩阵不等式来设计一组所需的同步控制器。最后,提供了一个仿真示例来验证所提出的动态事件触发同步控制方案的有效性。

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