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Finite-time fault-tolerant control of neutral systems against actuator saturation and nonlinear actuator faults

机译:用于执行器饱和度和非线性执行器故障的中性系统有限时间容错控制

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This paper deals with the problem of finite-time fault-tolerant control design for a class of neutral systems subject to actuator saturation in which the time-varying delay appears in both the state and the state derivative. Specifically, this is the first attempt to consider the concept of finite-time stability for neutral systems under nonlinear fault-tolerant controller. In particular, the fault model which consists of both linear and nonlinear parts is implemented through the design of controller. By applying the Lyapunov technique and some integral inequalities, a set of sufficient conditions is derived in the form of linear matrix inequalities to ensure the finite-time stability of the addressed neutral systems. Finally, two numerical examples with simulation results are given to illustrate the effectiveness of the proposed method. (C) 2018 Elsevier Inc. All rights reserved.
机译:本文讨论了一类受致动器饱和度的一类中性系统的有限时间容错控制设计的问题,其中在状态和状态衍生中出现时变延迟。 具体而言,这是第一次尝试考虑非线性容错控制器下中性系统有限时间稳定性的概念。 特别地,通过控制器的设计实现了由线性和非线性部件组成的故障模型。 通过应用Lyapunov技术和一些积分不等式,可以以线性矩阵不等式的形式导出一组足够的条件,以确保寻址中性系统的有限时间稳定性。 最后,给出了具有模拟结果的两个数值例子来说明所提出的方法的有效性。 (c)2018年Elsevier Inc.保留所有权利。

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