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Distributed adaptive fault-tolerant output regulation of heterogeneous multi-agent systems with coupling uncertainties and actuator faults

机译:具有耦合不确定性和执行器故障的异构多助理系统的分布式自适应容错输出调节

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摘要

In this paper, we consider the distributed adaptive fault-tolerant output regulation problem for heterogeneous multiagent systems with matched system uncertainties and mismatched coupling uncertainties among subsystems under the influence of actuator faults. First, distributed finite-time observers are proposed for all subsystems to observe the state of the exosystem. Then, a novel fault-tolerant controller is designed to compensate for the influence of matched system uncertainties and actuator faults. By using the linear matrix inequality technique, a sufficient condition is provided to guarantee the solvability of the considered problem in the presence of mismatched coupling uncertainties. Moreover, it is shown that the system in closed-loop with the developed controller can achieve output regulation by using the Lyapunov stability theory and cyclic-small-gain theory. Finally, a numerical example is given to illustrate the effectiveness of the obtained result.
机译:在本文中,我们考虑了具有匹配的系统不确定性的异构多层系统的分布式自适应容错输出调节问题,并在执行器故障的影响下的子系统中的不匹配耦合不确定性。首先,为所有子系统提出了分布式有限时间观察者,以观察到外部系统的状态。然后,设计一种新型容错控制器,用于补偿匹配的系统不确定性和执行器故障的影响。通过使用线性矩阵不等式技术,提供了足够的条件以确保所考虑的问题在存在错配的耦合不确定因素中的可溶性。此外,示出了通过使用Lyapunov稳定性理论和循环小增益理论,闭环中的系统可以实现输出调节。最后,给出了数值例子来说明所获得的结果的有效性。

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