• Title of article

    Robust H/sub (infinity)/ controller design with recurrent neural network for linear synchronous motor drive

  • Author/Authors

    Lin، Faa-Jeng نويسنده , , Lee، Tzann-Shin نويسنده , , Lin، Chih-Hong نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2003
  • Pages
    -455
  • From page
    456
  • To page
    0
  • Abstract
    In this paper, a robust controller design with H/sub (infinity)/ performance using a recurrent neural network (RNN) is proposed for the position tracking control of a permanent-magnet linear synchronous motor. The proposed robust H/sub (infinity)/ controller, which comprises a RNN and a compensating control, is developed to reduce the influence of parameter variations and external disturbance on system performance. The RNN is adopted to estimate the dynamics of the lumped plant uncertainty, and the compensating controller is used to eliminate the effect of the higher order terms in Taylor series expansion of the minimum approximation error. The tracking performance is ensured in face of parameter variations, external disturbance and RNN estimation error once a prespecified H/sub (infinity)/ performance requirement is achieved. The synthesis of the RNN training rules and compensating control are based on the solution of a nonlinear H/sub (infinity)/ control problem corresponding to the desired H/sub (infinity)/ performance requirement, which is solved via a choice of quadratic storage function. The proposed control method is able to track both the periodic step and sinusoidal commands with improved performance in face of large parameter perturbations and external disturbance.
  • Keywords
    numerical , methods , adaptive optics , instrumentation
  • Journal title
    IEEE Transactions on Industrial Electronics
  • Serial Year
    2003
  • Journal title
    IEEE Transactions on Industrial Electronics
  • Record number

    62088