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Robust fault-tolerant H2 /H#x221E; controller design based on state feedback

机译:鲁棒故障容错H 2 / H 控制器设计基于状态反馈

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This paper studies mixed H2 / H robust fault-tolerant control for a class of uncertain systems with actuator or sensor faults. A sufficient and necessary condition is derived by using Linear Matrix Inequality (LMI) approach, which guarantees that the uncertain closed-loop system is robustly asymptotically stable and satisfies the mixed H2 / H constraints in both normal and any actuator or sensor failure cases. Under the designed state feedback controller, in any case, when all possible actuators or sensors failure, the closed-loop system remains asymptotically stable and satisfies the given disturbance attenuation performances. It gives a uniform conclusion on those actuators' faults or sensors' faults. This can be used as an reference in some engineering systems, when it refers to the robust fault-tolerant control.
机译:本文研究混合H 2 / H 具有执行器或传感器故障的一类不确定系统的鲁棒容错控制。通过使用线性矩阵不等式(LMI)方法来得出足够和必要的条件,这保证了不确定的闭环系统具有鲁棒性渐近稳定的并且满足混合H 2 / H ∞< / INF>在正常和任何执行器或传感器故障情况下的约束。在设计的状态反馈控制器下,在任何情况下,当所有可能的致动器或传感器发生故障时,闭环系统保持渐近稳定并满足给定的扰动衰减性能。它对这些执行器的故障或传感器的故障提供了统一的结论。这可以用作某些工程系统中的参考,当它指的是鲁棒容错控制时。

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