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Adaptive sensor-fault tolerant control for a class of MIMO uncertain nonlinear systems: Adaptive nonlinear filter-based dynamic surface control

机译:一类MIMO不确定非线性系统的自适应传感器容错控制:基于自适应非线性滤波器的动态表面控制

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摘要

This paper presents an adaptive fault tolerant control (FTC) scheme for a class of multiple-input multiple output (MIMO) nonlinear systems against sensor faults, modeling errors and external disturbances. Four kinds of sensor faults including bias, drift, loss of accuracy and loss of effectiveness can be tolerated by the proposed FTC system. Within this scheme, dynamic surface control (DSC) technique, robust adaptation laws and adaptive nonlinear filters are combined for designing an adaptive dynamic surface control (ADSC)-based FTC system in order to compensate for the effects of sensor faults and system uncertainties (including external disturbances, modeling errors and unexpected nonlinear functions caused by sensor faults). Lyapunov approach is used to prove that all the signals in the closed-loop system are bounded and the tracking-errors can be forced to converge into a small neighborhood of zero. The feasibility and the effectiveness of the proposed FTC controller are demonstrated through two simulation examples. (C) 2016 The Franklin Institute. Published by Elsevier Ltd. All rights reserved.
机译:本文针对一类多输入多输出(MIMO)非线性系统,针对传感器故障,建模误差和外部干扰提出了一种自适应容错控制(FTC)方案。提出的FTC系统可以容忍四种传感器故障,包括偏差,漂移,精度损失和有效性损失。在该方案中,结合了动态表面控制(DSC)技术,鲁棒的自适应律和自适应非线性滤波器,以设计基于自适应动态表面控制(ADSC)的FTC系统,以补偿传感器故障和系统不确定性(包括外部故障,建模错误以及由传感器故障引起的意外非线性函数)。用Lyapunov方法证明闭环系统中的所有信号都是有界的,并且可以迫使跟踪误差收敛到零附近。通过两个仿真实例证明了所提出的FTC控制器的可行性和有效性。 (C)2016富兰克林研究所。由Elsevier Ltd.出版。保留所有权利。

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  • 来源
    《Journal of the Franklin Institute》 |2016年第6期|1313-1338|共26页
  • 作者单位

    Univ Jijel, Dept Automat Control, LAJ, BP 98 Ouled Aissa, Jijel, Algeria|Natl Polytech Sch ENP, Dept Automat Control, LCP, 10 Av Hassen Badi,BP 182, Algiers, Algeria;

    Natl Polytech Sch ENP, Dept Automat Control, LCP, 10 Av Hassen Badi,BP 182, Algiers, Algeria;

    Univ Jijel, Dept Automat Control, LAJ, BP 98 Ouled Aissa, Jijel, Algeria;

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