Fault-Tolerant Trajectory Tracking Control for Takagi–Sugeno Systems with Unmeasurable Premise Variables: Descriptor Approach

被引:0
|
作者
H. Ghorbel
A. El Hajjaji
M. Souissi
M. Chaabane
机构
[1] University of Sfax,National School of Engineers of Sfax
[2] University of Picardie Jules Vernes (UPJV),undefined
关键词
Nonlinear system; FTC; TS fuzzy model; Descriptor observer; Sensor fault estimation; Unmeasurable premise variables; LMI;
D O I
暂无
中图分类号
学科分类号
摘要
This paper discusses the problem of fault-tolerant tracking control (FTTC) for fuzzy nonlinear systems with unmeasurable premise variables. To simultaneously estimate the system states and the sensor faults, a fuzzy descriptor observer is developed. Then, a fault-tolerant controller to track the desired reference trajectories is synthesized. The sufficient stability conditions of the appropriate nonlinear augmented system are derived via the Lyapunov theory and the H∞\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$H_\infty $$\end{document} approach. In order to obtain both the observer and the controller gains the design conditions are formulated in Linear matrix inequality terms which can be solved using a one-step design procedure. Finally, the FTTC strategy is illustrated on a two-tank system to show its effectiveness.
引用
收藏
页码:1763 / 1781
页数:18
相关论文
共 50 条
  • [31] Takagi-Sugeno fuzzy fault-tolerant control of an induction motor
    Lopez-Toribio, CJ
    Patton, RJ
    Daley, S
    NEURAL COMPUTING & APPLICATIONS, 2000, 9 (01): : 19 - 28
  • [32] Actuator fault-tolerant control for discrete Takagi-Sugeno fuzzy systems using the matrices norms approach
    Hamadou, Meroua
    Belarbi, Khaled
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART I-JOURNAL OF SYSTEMS AND CONTROL ENGINEERING, 2024, 238 (03) : 571 - 580
  • [33] State and unknown input estimation for nonlinear systems described by Takagi-Sugeno models with unmeasurable premise variables
    Ichalal, Dalil
    Marx, Benoit
    Ragot, Jose
    Maquin, Didier
    MED: 2009 17TH MEDITERRANEAN CONFERENCE ON CONTROL & AUTOMATION, VOLS 1-3, 2009, : 217 - 222
  • [34] Active Adaptive Observer-Based Fault-Tolerant Control Strategy for a Class of T–S Fuzzy Systems With Unmeasurable Premise Variables
    Zare, Iman
    Asemani, Mohammad Hassan
    Setoodeh, Peyman
    IEEE TRANSACTIONS ON FUZZY SYSTEMS, 2023, 31 (10) : 3543 - 3554
  • [35] Robust fault estimation and fault-tolerant tracking control for uncertain Takagi-Sugeno fuzzy systems: Application to single link manipulator
    Makni, Salama
    Bouattour, Maha
    El Hajjaji, Ahmed
    Chaabane, Mohamed
    INTERNATIONAL JOURNAL OF ADAPTIVE CONTROL AND SIGNAL PROCESSING, 2021, 35 (05) : 846 - 876
  • [36] Constrained Fault Tolerant Control Design for Takagi Sugeno Systems
    Aouaouda, Sabrina
    Moussaoui, Lotfi
    Bouhali, Omar
    PROCEEDINGS 2018 3RD INTERNATIONAL CONFERENCE ON ELECTRICAL SCIENCES AND TECHNOLOGIES IN MAGHREB (CISTEM), 2018, : 900 - 905
  • [37] Learning Observer-based Robust H∞ Fault-Tolerant Control for Takagi-Sugeno descriptor systems with time-delay
    Kharrat, Dhouha
    Gassara, Hamdi
    El Hajjaji, Ahmed
    Chaabane, Mohamed
    2018 26TH MEDITERRANEAN CONFERENCE ON CONTROL AND AUTOMATION (MED), 2018, : 697 - 702
  • [38] Fault-Tolerant Tracking Control and Remaining Useful Life Estimation for Takagi-Sugeno fuzzy system
    Kukurowski, Norbert
    Pazera, Marcin
    Witczak, Marcin
    IEEE CIS INTERNATIONAL CONFERENCE ON FUZZY SYSTEMS 2021 (FUZZ-IEEE), 2021,
  • [39] A robust predictive actuator fault-tolerant control scheme for Takagi-Sugeno fuzzy systems
    Witczak, P.
    Witczak, M.
    Korbicz, J.
    Aubrun, Ch.
    BULLETIN OF THE POLISH ACADEMY OF SCIENCES-TECHNICAL SCIENCES, 2015, 63 (04) : 977 - 987
  • [40] Unknown Dynamics Decoupling to Overcome Unmeasurable Premise Variables in Takagi-Sugeno Observer Design
    Arioui, H.
    Nehaoua, L.
    IEEE CONTROL SYSTEMS LETTERS, 2021, 5 (01): : 61 - 66