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Event-Triggered Master–Slave Synchronization With Sampled-Data Communication

机译:事件触发的主从同步与采样数据通信

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摘要

In this brief, the event-triggered synchronization is investigated for a class of heterogeneous master–slave coupling systems consisting of a high-dimensional master system but a low-dimensional slave system. An event-triggered sampled-data transmission strategy is designed, which allows the event-triggered condition to be examined only at sampling instants. With the assumption that only some sampled-data outputs of the master system are available to the slave system, a kind of observer-based synchronization controller is constructed and utilized. Based on a delayed-input approach, the master–slave synchronization problem is equivalently converted into the asymptotical stability problem of a time-delay system. By constructing an appropriate Lyapunov–Krasovskii functional and employing the free-weighting matrix approach, some sufficient synchronization criteria in terms of linear matrix inequalities are derived. Numerical simulations are finally provided to verify the theoretical results.
机译:在本摘要中,将研究一类由高维主系统但低维从系统组成的异类主从耦合系统的事件触发同步。设计了事件触发的采样数据传输策略,该策略允许仅在采样瞬间检查事件触发的条件。假设主系统仅一些采样数据输出可用于从系统,则构造并利用一种基于观察者的同步控制器。基于延迟输入的方法,主从同步问题等效地转换为时滞系统的渐近稳定性问题。通过构造适当的Lyapunov–Krasovskii泛函并采用自由加权矩阵方法,就线性矩阵不等式得出了一些足够的同步准则。最后提供数值模拟以验证理论结果。

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