Title :
Precision motion control with disturbance observer for pulsewidth-modulated-driven permanent-magnet linear motors
Author :
Tan, Kok Kiong ; Lee, Tong Heng ; Dou, Hui Fang ; Chin, Shok Jun ; Zhao, Shao
Author_Institution :
Dept. of Electr. Eng., Nat. Univ. of Singapore, Singapore
fDate :
5/1/2003 12:00:00 AM
Abstract :
In this paper, we address the problem of precision motion control of permanent-magnet linear motors (PMLMs) under the influence of significant disturbances. We establish a mathematical model of a PMLM driven by a sinusoidal pulsewidth-modulated (PWM) amplifier, obtaining it from a describing function analysis of the essentially nonlinear characteristics. The overall model (PWM+PMLM) inevitably inherits uncertainties in the face of load changes, system parameter perturbation, noise, and inherent system nonlinearities, etc., all of which constitute disturbances to the control system that will adversely affect the precision and accuracy. We propose a robust control scheme employing a disturbance observer to address the sensitivity of the control performance to the disturbances. Real-time experimental results are provided to verify and confirm the practical effectiveness of the proposed approach.
Keywords :
amplifiers; control system synthesis; linear motors; machine control; motion control; motor drives; observers; permanent magnet motors; pulse width modulation; robust control; PWM-driven PM linear motors; control system disturbances; describing function analysis; disturbance observer; mathematical model; nonlinear characteristics; permanent-magnet linear motors; precision motion control; pulsewidth-modulated-driven motors; robust control scheme; sinusoidal PWM amplifier; Control nonlinearities; Control system synthesis; Mathematical model; Motion control; Nonlinear control systems; Pulse amplifiers; Pulse width modulation; Robust control; Space vector pulse width modulation; Uncertainty;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2003.810617