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Stabilization of uncertain switched discrete-time systems against actuator faults and input saturation

机译:对执行器故障的不确定切换离散时间系统的稳定和输入饱和

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This paper studies the robust fault-tolerant stabilization problem for a class of uncertain switched discrete-time systems subject to time delays, actuator faults and input saturation by using delta operator approach. By constructing an appropriate Lyapunov-Krasovskii functionals in delta domain, a new set of sufficient conditions is provided for the stability of the delta operator time delay switched systems. More precisely, gain matrices of the fault-tolerant controller can be computed by solving the linear matrix inequalities and the proposed controller can robustly stabilize the uncertain delta operator time delay switched system for all admissible parameter perturbations. Further, in order to obtain a maximal estimate of the domain of attraction, an LMI based optimization algorithm is presented. It is noted that a better control performance can be obtained for small sampling periods by using delta operator approach than using shift operator. Finally, numerical examples with simulation results are presented to illustrate the effectiveness and potential of the developed control design technique. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文研究了一类不确定的切换离散时间系统的稳健容错稳定问题,通过使用Delta操作员方法,通过时间延迟,执行器故障和输入饱和度进行时间延迟,执行器故障和输入饱和度。通过在Delta域中构建适当的Lyapunov-Krasovskii功能,提供了一种用于Delta操作员时间延迟切换系统的稳定性的新的充足条件。更确切地说,可以通过求解线性矩阵不等式来计算容错控制器的增益矩阵,并且所提出的控制器可以鲁棒地稳定,以满足所有可允许参数扰动的不确定的Delta操作员时间延迟交换系统。此外,为了获得吸引域的最大估计,呈现了基于LMI的优化算法。注意,通过使用比使用换档操作员可以使用Delta操作员方法可以获得更好的控制性能。最后,提出了具有仿真结果的数值示例以说明开发控制设计技术的有效性和潜力。 (c)2019年elestvier有限公司保留所有权利。

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