• DocumentCode
    1103514
  • Title

    Fault estimation and fault-tolerant control for descriptor systems via proportional, multiple-integral and derivative observer design

  • Author

    Gao, Z. ; Ding, S.X.

  • Author_Institution
    Tianjin Univ., Tianjin
  • Volume
    1
  • Issue
    5
  • fYear
    2007
  • Firstpage
    1208
  • Lastpage
    1218
  • Abstract
    We present a proportional, multiple-integral and derivative (PMID) observer technique that can simultaneously estimate system states, fault signals and the finite times derivatives of the faults for a descriptor system with input and measurement faults. Furthermore for a descriptor system with input and measurement faults and unknown disturbances (including modelling errors), a robust PMID observer is designed to simultaneously estimate system states, fault signals, the derivatives of the faults, and attenuate disturbances successfully. Fault-tolerant design is another important issue in this study. By using the obtained estimates of states and faults, and linear matrix inequality technique, a fault-tolerant control scheme is addressed, which ensures the closed-loop plant to be internally proper stable with prescribed Hinfin performance index even as unbounded faults occur. Finally, a numerical example is given to illustrate the design procedures, and simulations show satisfactory tracking and fault-tolerant control performance.
  • Keywords
    Hinfin control; PD control; PI control; closed loop systems; fault tolerance; linear matrix inequalities; observers; performance index; Hinfin performance index; closed-loop plant; descriptor systems; fault estimation; fault signals; fault-tolerant control; finite times derivatives; linear matrix inequality; proportional multiple-integral derivative observer design; robust observer;
  • fLanguage
    English
  • Journal_Title
    Control Theory & Applications, IET
  • Publisher
    iet
  • ISSN
    1751-8644
  • Type

    jour

  • DOI
    10.1049/iet-cta:20060389
  • Filename
    4293125