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Robust adaptive H#x221E; fault-tolerant control for uncertain linear systems against actuator failures

机译:不确定线性系统针对执行器故障的鲁棒自适应H 容错控制

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This paper is concerned with the robust adaptive H∞ fault-tolerant control problem for linear systems with the mismatched parameter uncertainties, input channel and external disturbances, and actuator faults including loss of effectiveness, outage and stuck. Without requiring any fault detection and isolation mechanism, a novel adaptation law with a rather simpler structure is employed to estimate the unknown controller parameters. Based on a notion of an adaptive H∞ performance index, the designed adaptive fault-tolerant controller can guarantee the disturbance attenuation and optimal H∞ performance. Furthermore, on the basis of Lyapunov stability theory, it is shown that the proposed fault-tolerant strategy guarantees that the closed-loop system is asymptotically stable in the presence of the mismatched parameter uncertainty, disturbance and actuator faults simultaneously. Finally, a rocket fairing structural-acoustic model is used to demonstrate the efficiency of the proposed fault-tolerant design approach.
机译:本文关注的是线性系统的鲁棒自适应H∞容错控制问题,该系统具有不匹配的参数不确定性,输入通道和外部干扰,以及执行器故障,包括有效性损失,停电和卡住。在不需要任何故障检测和隔离机制的情况下,采用结构更简单的新型自适应律来估计未知控制器参数。基于自适应H∞性能指标的概念,设计的自适应容错控制器可以保证干扰衰减和最佳H∞性能。此外,基于李雅普诺夫稳定性理论,证明了所提出的容错策略保证了在参数不匹配,干扰和执行器故障同时存在的情况下,闭环系统是渐近稳定的。最后,火箭整流罩结构声学模型被用来证明所提出的容错设计方法的效率。

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