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Two-Channel Periodic Event-Triggered Observer-Based Repetitive Control for Periodic Reference Tracking

机译:基于两通道定期事件触发的观察者的重复控制,用于定期参考跟踪

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This paper proposes a two-channel periodic event-triggered observed-based repetitive control strategy to track a periodic reference signal subject to limited communication capacity. Under the designed two-channel periodic event-triggering framework, within any two consecutive event-triggering instants in each event-triggering channel, not only the output measurements to the state observer but also the observer states to the repetitive controller structure are kept unchanged via a zero-order hold (ZOH) which can substantially alleviate the communication burden when the output measurements and the observer states do not change significantly. By employing the input delay approach, the overall system consisting of the physical plant, the state observer, the repetitive controller, and the two-channel periodic event-triggering mechanisms is modeled as a closed-loop time-varying delay system. Sufficient conditions in terms of linear matrix inequalities are derived to ensure the closed-loop system to be asymptotically stable with a prescribed Hattenuation performance level for an exogenous disturbance input. The controller gains, observer gains, and the event-triggering parameters are synthesized by using a matrix decomposition technique. A numerical example is provided to evaluate the proposed design approach.
机译:本文提出了一种基于观测值的两通道周期性事件触发的重复控制策略,以跟踪受限通信容量的周期性参考信号。在设计的两通道周期性事件触发框架下,在每个事件触发通道中的任何两个连续的事件触发瞬间内,不仅状态观测器的输出测量值而且重复控制器结构的观测器状态通过保持不变。零阶保持(ZOH),当输出测量值和观察者状态没有明显变化时,它可以大大减轻通信负担。通过采用输入延迟方法,将由物理工厂,状态观察器,重复控制器和两通道定期事件触发机制组成的整个系统建模为闭环时变延迟系统。得出关于线性矩阵不等式的充分条件,以确保闭环系统在规定的H下渐近稳定 外部干扰输入的衰减性能等级。控制器增益,观察者增益和事件触发参数通过使用矩阵分解技术进行合成。提供了一个数值示例来评估所提出的设计方法。

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