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Systematic Design of Robust Event-Triggered State and Output Feedback Controllers for Uncertain Nonholonomic Systems

机译:用于不确定非完整系统的鲁棒事件触发状态和输出反馈控制器的系统设计

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This article studies the event-triggered control problem for nonholonomic systems in the chained form with disturbances and drift uncertain nonlinearities. Both the cases of state-feedback and output-feedback are investigated. To address the effects of nonholonomic constraints in event-triggered control, a new systematic design integrating a state-scaling technique and set-valued maps are proposed. A crucial strategy is to transform the event-triggered control system into an interconnection of multiple input-to-state stable systems, to which the cyclic-small-gain theorem is applied for event-based controller synthesis. It is shown that the cyclic-small-gain-based design scheme leads to Zeno-free event-triggered controllers. For the output-feedback case, a new nonlinear observer is designed to deal with the sampling errors. Interestingly, the obtained results are new even if the plant model is disturbance-free. Both numerical and experimental results validate the efficiency of the proposed cyclic-small-gain-based event-triggered control methodology.
机译:本文研究了与扰动和漂移不确定非线性的链形式中非完整系统的事件触发控制问题。调查了国家反馈和输出反馈的案件。为了解决非完整约束在事件触发控制中的影响,提出了集成状态缩放技术和设定值映射的新系统设计。重要策略是将事件触发的控制系统转换为多个输入到状态稳定系统的互连,循环小增益定理应用于基于事件的控制器合成。结果表明,基于循环小增益的设计方案导致无邻无象的事件触发的控制器。对于输出反馈案例,设计了一个新的非线性观察者来处理采样错误。有趣的是,即使植物模型是无干扰的,所获得的结果也是新的。数值和实验结果验证了基于循环小增益的事件触发控制方法的效率。

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