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Multiplicative Fault Estimation-Based Adaptive Sliding Mode Fault-Tolerant Control Design for Nonlinear Systems

机译:基于乘法故障估计的非线性系统自适应滑模容错控制设计

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摘要

This article deals with the sliding mode fault-tolerant control (FTC) problem for a nonlinear system described under Takagi-Sugeno (T-S) fuzzy representation. In particular, the nonlinear system is corrupted with multiplicative actuator faults, process faults, and uncertainties. We start by constructing the separated FTC design to ensure robust stability of the closed-loop nonlinear system. First, we propose to conceive an adaptive observer in order to estimate nonlinear system states, as well as robust multiplicative fault estimation. The novelty of the proposed approach is that the observer gains are obtained by solving the multiobjective linear matrix inequality (LMI) optimization problem. Second, an adaptive sliding mode controller is suggested to offer a solution to stabilize the closed-loop system despite the occurrence of real fault effects. Compared with the separated FTC, this paper provides an integrated sliding mode FTC in order to achieve an optimal robustness interaction between observer and controller models. Thus, in a single-step LMI formulation, sufficient conditions are developed with multiobjective optimization performances to guarantee the stability of the closed-loop system. At last, nonlinear simulation results are given to illustrate the effectiveness of the proposed FTC to treat multiplicative faults.
机译:本文涉及Takagi-Sugeno(T-S)模糊表示下描述的非线性系统的滑模容错控制(FTC)问题。特别是,非线性系统损坏,乘法执行器故障,过程故障和不确定性。我们首先构建分离的FTC设计,以确保闭环非线性系统的鲁棒稳定性。首先,我们建议设想自适应观察者以估计非线性系统状态,以及鲁棒的乘法故障估计。所提出的方法的新颖性是通过求解多目标线性矩阵不等式(LMI)优化问题来获得观察者收益。其次,尽管发生了实际断层效应,建议提供自适应滑模控制器以提供解决闭环系统的解决方案。与分离的FTC相比,本文提供了一种集成的滑动模式FTC,以便在观察者和控制器模型之间实现最佳的鲁棒性相互作用。因此,在单步LMI制剂中,利用多目标优化性能开发了足够的条件,以保证闭环系统的稳定性。最后,给出了非线性模拟结果来说明所提出的FTC治疗乘法断层的有效性。

著录项

  • 来源
    《Complexity》 |2018年第2期|共15页
  • 作者单位

    Tunis Univ Natl Higher Sch Engineers Tunis Engn Lab Ind Syst &

    Renewable Energies Tunis Tunisia;

    Tunis Univ Natl Higher Sch Engineers Tunis Engn Lab Ind Syst &

    Renewable Energies Tunis Tunisia;

    Tunis Univ Natl Higher Sch Engineers Tunis Engn Lab Ind Syst &

    Renewable Energies Tunis Tunisia;

    Tunis Univ Natl Higher Sch Engineers Tunis Engn Lab Ind Syst &

    Renewable Energies Tunis Tunisia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大系统理论;
  • 关键词

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