Active fault tolerant control with sliding mode observer

Li Hao, Yang Ying, Zhang Yong, Zhao Zhengen
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引用次数: 2

Abstract

In this paper, the fault tolerant control problem is studied and the actuator fault resulting from loss of actuator effectiveness is considered. A fault tolerant controller consisting of two parts is proposed and each part can be designed separately. One part aims to maintain the stability and desired performance of the system and the other part is used to compensate the fault with the fault reconstruction information. The sliding mode observer is designed for the state estimation and the fault reconstruction. The regional pole placement is applied to assign the poles in a specified disk and improve the system performance. The Lyapunov function approach is considered for the design of the first part controller and the designed parameter matrix can be solved by linear matrix inequality (LMI) technique with multi-constraint conditions. Simulation studies are undertaken in an aircraft system to show the efficiency of the proposed scheme.
滑模观测器主动容错控制
本文研究了执行器的容错控制问题,并考虑了执行器失效导致的执行器故障。提出了一种容错控制器,由两个部分组成,每个部分可以单独设计。一部分用于维持系统的稳定性和预期性能,另一部分用于利用故障重构信息对故障进行补偿。设计了滑模观测器用于状态估计和故障重建。采用区域极点配置,在指定的磁盘上分配极点,提高系统性能。采用李雅普诺夫函数法设计第一部分控制器,并利用多约束条件下的线性矩阵不等式(LMI)技术求解所设计的参数矩阵。在飞机系统中进行了仿真研究,以证明所提方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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