• DocumentCode
    397728
  • Title

    Unstationary control of a launcher using observer-based structures

  • Author

    Voinot, O. ; Alazard, D. ; Clément, B.

  • Author_Institution
    Dept. of Control Syst., ONERA-CERT, Toulouse, France
  • Volume
    4
  • fYear
    2003
  • fDate
    4-6 June 2003
  • Firstpage
    3466
  • Abstract
    This paper deals with the design of a gain-scheduled controller for the attitude control of a launcher during atmospheric flight. The design is characterized by classical requirements such as phase/gain margins and flexible mode attenuations as well as time-domain constraints on the response of angle of attack to a worst-case wind profile. Moreover, these requirements must be fulfilled over the full atmospheric flight envelope and must be robust against parametric uncertainties. In order to achieve this goal, we propose a method based on minimal observer-based realizations of arbitrary stabilizing compensators. An original technique to assign the closed-loop dynamics between the state-feedback dynamics and the state-estimation dynamics is presented for the H compensators case. The structure is used to mix various specifications through the cross standard form (CSF) and to perform a smooth gain scheduling interpolation through an Euler-Newton algorithm of continuation.
  • Keywords
    H control; attitude control; closed loop systems; compensation; control system synthesis; interpolation; observers; scheduling; state feedback; time-domain synthesis; Euler-Newton continuation algorithm; H compensators case; Launcher unstationary control; angle of attack; arbitrary stabilizing compensator; atmospheric flight envelope; closed-loop dynamic; cross standard form; flexible mode attenuation; gain margin; gain scheduling interpolation; gain-scheduled controller; minimal observer-based realization; observer-based structure; phase margin; state-estimation dynamic; state-feedback dynamic; time-domain constraint; worst-case wind profile; Attenuation; Control systems; Hydrogen; Inverse problems; Microwave integrated circuits; Riccati equations; Robust control; Robustness; Time domain analysis; Uncertainty;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    American Control Conference, 2003. Proceedings of the 2003
  • ISSN
    0743-1619
  • Print_ISBN
    0-7803-7896-2
  • Type

    conf

  • DOI
    10.1109/ACC.2003.1244068
  • Filename
    1244068