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首页> 外文期刊>Nonlinear analysis. Hybrid systems: An International Multidisciplinary Journal >Composite anti-disturbance control for a discrete-time time-varying delay system with actuator failures based on a switching method and a disturbance observer
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Composite anti-disturbance control for a discrete-time time-varying delay system with actuator failures based on a switching method and a disturbance observer

机译:基于切换方法和扰动观测器的具有执行器故障的离散时变时滞系统的复合抗干扰控制

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摘要

The composite anti-disturbance control problem is developed for discrete-time systems with both time-varying delay and multiple disturbances under actuator failures in this paper. First, depending on the information of actuator failures, the system is transformed into a switched system. Then, considering the switched system, the composite controller is designed via a disturbance observer based control and an exponential l_2?l_∞ control method. A disturbance observer is constructed to estimate the disturbances generated by an exogenous system, and the estimated value is introduced into a memory exponential l_2?l_∞ state feedback control law, such that, the closed-loop system is asymptotically stable, and different types of disturbances are rejected and attenuated. Third, by resorting to the average dwell time approach and the free-weighting matrix technique, some sufficient criteria for the desired disturbance observer and the state feedback controller are established, and the corresponding solvability conditions using a cone complementarity linearization method are presented. A numerical example is provided to demonstrate the effectiveness of the proposed algorithms finally.
机译:本文针对执行器故障时具有时变时滞和多重扰动的离散时间系统,提出了一种复合的抗干扰控制问题。首先,根据执行器故障的信息,将系统转换为交换式系统。然后,考虑切换系统,通过基于扰动观测器的控制和指数l_2→l_∞控制方法设计复合控制器。构造一个扰动观测器来估计外源系统产生的扰动,并将估计值引入到存储器指数l_2?l_∞状态反馈控制律中,从而使闭环系统渐近稳定,并且不同类型的干扰被抑制和减弱。第三,借助平均停留时间方法和自由加权矩阵技术,为期望的干扰观测器和状态反馈控制器建立了一些充分的标准,并提出了使用锥互补线性化方法的相应可解条件。最后通过数值例子验证了所提算法的有效性。

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