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Adaptive fault-tolerant control for time-delay systems with saturation nonlinearity and L2-disturbances

机译:具有饱和非线性和L2干扰的时滞系统的自适应容错控制

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This paper studies the problem of designing adaptive fault-tolerant H controllers for linear time-delay systems with actuator saturation. The disturbance tolerance ability of the closed-loop system is measured by an optimal index. A notion of adaptive H performance index is proposed to describe the disturbance attenuation performances of closed-loop systems. New methods for designing indirect adaptive fault-tolerant controllers via state feedback are presented for actuator fault compensations. Based on the on-line estimation of eventual faults, the adaptive fault-tolerant controller parameters are updating automatically to compensate the fault effects on systems. The designs are developed in the framework of linear matrix inequality (LMI) approach, which can guarantee the disturbance tolerance ability and adaptive H performances of closed-loop systems in the cases of actuator saturation and actuator failures. An example is given to illustrate the efficiency of the design method.
机译:研究了具有执行器饱和的线性时滞系统的自适应容错H 控制器的设计问题。闭环系统的抗干扰能力是通过最佳指标来衡量的。提出了一种自适应H 性能指标的概念来描述闭环系统的干扰衰减性能。提出了通过状态反馈设计间接自适应容错控制器的新方法,用于执行器故障补偿。基于对最终故障的在线估计,自适应容错控制器参数会自动更新,以补偿对系统的故障影响。这些设计是在线性矩阵不等式(LMI)方法的框架内开发的,该方法可以确保在执行器饱和和执行器故障的情况下,闭环系统的抗干扰能力和自适应H 性能。给出一个例子来说明设计方法的效率。

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