• DocumentCode
    71960
  • Title

    Practical Wind-Disturbance Rejection for Large Deep Space Observatory Antenna

  • Author

    Demin Qiu ; Mingwei Sun ; Zenghui Wang ; Yongkun Wang ; Zengqiang Chen

  • Author_Institution
    China Xi´an Satellite Control Center, Xi´an, China
  • Volume
    22
  • Issue
    5
  • fYear
    2014
  • fDate
    Sept. 2014
  • Firstpage
    1983
  • Lastpage
    1990
  • Abstract
    The wind-load disturbance is the major factor that affects the pointing and tracking accuracy of a large deep space observatory antenna. An antenna position control scheme is proposed based on the most popularly used proportional-integral-derivative controller. The wind-load torque and other uncertain mechanical dynamics are treated as external and internal disturbances, respectively. All disturbances considered as a whole can be estimated and compensated based on an extended state observer, which can attenuate the adverse effects caused by the wind. The mechanism of electric motor is used to simplify the design procedure and reduce the required order of the observer. In addition, only minor control software modifications are required for the existing control system of the antenna. At first, the effectiveness of the proposed approach was illustrated by mathematical simulations. Then, this methodology was applied to a practical installation. In the experiment, a 65.2% reduction of overshoot and a remarkable amelioration in the capacity of wind-disturbance rejection were achieved, whereas the tracking precision was also improved significantly. In addition, the proposed method can also reduce the possibility of wearing and tearing of the installation.
  • Keywords
    impact (mechanical); observers; pointing systems; position control; satellite antennas; three-term control; torque control; wind; antenna position control scheme; design procedure; electric motor; external disturbances; internal disturbances; large deep space observatory antenna; mathematical simulations; pointing; proportional-integral-derivative controller; software modifications; state observer; tracking accuracy; tracking precision; uncertain mechanical dynamics; wind-disturbance rejection; wind-load disturbance; wind-load torque; Aerospace electronics; Antennas; Observatories; Observers; PD control; Servomotors; Torque; Convergence; disturbance observer; extended state observer (ESO); large deep space observatory antenna; wind load; wind load.;
  • fLanguage
    English
  • Journal_Title
    Control Systems Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1063-6536
  • Type

    jour

  • DOI
    10.1109/TCST.2013.2296935
  • Filename
    6719489