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Event-Triggered Adaptive Control for a Class of Nonlinear Systems with Unknown Time-Varying Parameters

机译:一类具有未知时变参数的非线性系统的事件触发自适应控制

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In this paper, we investigate the event-triggered output tracking problem for a class of nonlinear systems with unknown time-varying parameters. To reduce the communication burden, an event-triggered adaptive control method is proposed by introducing hyperbolic tangent functions in the controller to compensate for the effects of the time-varying parameters. New estimation laws are developed to estimate the bounds of time-varying parameters, where no any prior information about the bounds of unknown time-varying parameters is required. An additional term is introduced in the parameter estimation law to compensate for the effects of unknown time-varying parameters. The proposed control scheme can effectively reduce the communication burden while maintain global stability of the closed-loop system, which means that all the signals are bounded. And the tracking error converges towards an adjustable set, which can be exactly expressed with the user-defined parameters. Simulation results are given to show the performance of the proposed method.
机译:在本文中,我们研究了一类具有未知时变参数的非线性系统的事件触发输出跟踪问题。为了减轻通信负担,提出了一种事件触发的自适应控制方法,该方法通过在控制器中引入双曲正切函数来补偿时变参数的影响。开发了新的估计定律来估计时变参数的边界,其中不需要有关未知时变参数的边界的任何先验信息。在参数估计定律中引入了一个附加项,以补偿未知时变参数的影响。所提出的控制方案可以有效地减轻通信负担,同时保持闭环系统的整体稳定性,这意味着所有信号都是有界的。跟踪误差会收敛到一个可调整的集合,该集合可以用用户定义的参数精确表示。仿真结果表明了该方法的有效性。

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