• DocumentCode
    1285902
  • Title

    Adaptive autocentering control for an active magnetic bearing supporting a rotor with unknown mass imbalance

  • Author

    Lum, Kai-Yew ; Coppola, Vincent T. ; Bernstein, Dennis S.

  • Author_Institution
    Dept. of Aerosp. Eng., Michigan Univ., Ann Arbor, MI, USA
  • Volume
    4
  • Issue
    5
  • fYear
    1996
  • fDate
    9/1/1996 12:00:00 AM
  • Firstpage
    587
  • Lastpage
    597
  • Abstract
    This paper presents a new approach, called adaptive autocentering, that compensates for transmitted force due to imbalance in an active magnetic bearing system. Under the proposed control law, a rigid rotor achieves rotation about the mass center and principal axis of inertia. The basic principle of this approach is to perform on-line identification of the physical characteristics of rotor imbalance and to use the identification results to tune a stabilizing controller. This approach differs from the usual strategy of adaptive feedforward compensation, which models the effect of imbalance as an external disturbance or measurement noise, and then cancels this effect by generating a synchronous reference signal. Unlike adaptive feedforward compensation, adaptive autocentering control is frequency independent and works under varying rotor speed. Performance of the control algorithm is demonstrated in simulation examples for the case of rigid rotors with static or dynamic imbalance
  • Keywords
    adaptive control; compensation; machine bearings; machine control; magnetic devices; parameter estimation; root loci; rotors; stability; active magnetic bearing; adaptive autocentering control; adaptive feedforward compensation; control algorithm performance; dynamic imbalance; measurement noise; on-line identification; rigid rotors; root locus analysis; rotor; rotor imbalance; stabilizing controller tuning; static imbalance; synchronous reference signal; transmitted force compensation; unknown mass imbalance; varying rotor speed; Adaptive control; Magnetic levitation; Noise cancellation; Noise generators; Noise measurement; Programmable control; Rotors; Signal generators; Synchronous generators; Weight control;
  • fLanguage
    English
  • Journal_Title
    Control Systems Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1063-6536
  • Type

    jour

  • DOI
    10.1109/87.531925
  • Filename
    531925