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Distributed adaptive fault-tolerant control approach to cooperative output regulation for linear multi-agent systems

机译:线性多助理系统协作输出调节的分布式自适应容错控制方法

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In this paper, the cooperative output regulation problem for linear multi-agent systems with actuator faults is considered. It is assumed that the actuator faults are outage faults and loss-of-effectiveness faults. First, a distributed finite-time observer is designed to estimate the state of the exosystem. Based on the state of the finite-time observer, a distributed adaptive fault-tolerant controller is designed. Then, it is shown that the cooperative output regulation problem can be solved with the proposed fault-tolerant controller. Compared with the existing cooperative output regulation results, a novel lemma is introduced to guarantee the solvability of the regulator equations under actuator faults, and the developed controller is effective to compensate the actuator faults. Finally, a simulation example is presented to show the validity of the proposed method. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文认为,考虑了具有执行器故障的线性多助手系统的协同输出调节问题。 假设执行器故障是中断故障和效益丧失故障。 首先,设计了分布式有限时间观察者来估计前列系统的状态。 基于有限时间观察者的状态,设计了一种分布式自适应容错控制器。 然后,示出了利用所提出的容错控制器来解决协作输出调节问题。 与现有的合作输出调节结果相比,引入了一种新的引理,以保证调节器方程在执行器断层下的可动性,并且发达的控制器有效补偿执行器故障。 最后,提出了一种模拟示例以显示所提出的方法的有效性。 (c)2019年elestvier有限公司保留所有权利。

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