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Event-Triggered Sampled-Data Control: An Active Disturbance Rejection Approach

机译:事件触发的采样数据控制:一种主动干扰消除方法

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The problem of event-triggered sampled-data control for networked systems is considered in this article. A nonlinear continuous-time system with uncertainty and disturbance is introduced, for which an event-triggered control problem based on an active disturbance rejection control approach is formulated. We first present the framework of the closed-loop system in which the control signal is transmitted at each event instant while the output measurements are transmitted in real time. Based on this framework, an easy-to-implement event-triggering strategy that relies on the state observation generated by an extended state observer is proposed, so that the asymptotic boundedness of the observation error is obtained and the stability of the closed-loop system can be guaranteed. Then, with some mild restrictions on initial values of the observer and plant, the boundedness of observation error can be maintained at any time. Finally, we extend the obtained results to a more general case in which the transmission of the measurements and control inputs are determined by separate event-triggering strategies. The performance of the proposed method is verified through experimental results on a direct current motor loading platform.
机译:本文考虑了网络系统的事件触发的采样数据控制问题。介绍了一种具有不确定性和扰动的非线性连续时间系统,针对该系统提出了基于主动扰动抑制方法的事件触发控制问题。我们首先介绍闭环系统的框架,其中在每个事件瞬间都发送控制信号,而实时发送输出测量值。在此框架的基础上,提出了一种基于扩展状态观测器产生的状态观测的易于实现的事件触发策略,从而获得了观测误差的渐近有界性,并给出了闭环系统的稳定性。可以保证。然后,在观察者和植物的初始值受到一些轻微限制的情况下,可以随时保持观察误差的边界。最后,我们将获得的结果扩展到更普遍的情况,其中测量和控制输入的传输由单独的事件触发策略确定。通过在直流电动机负载平台上的实验结果验证了该方法的性能。

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