DocumentCode :
1092295
Title :
Dual Speed Control Scheme of Servo Drive System for a Nonlinear Friction Compensation
Author :
Lee, Dong-Hee ; Ahn, Jin-Woo
Author_Institution :
Kyungsung Univ., Busan
Volume :
23
Issue :
2
fYear :
2008
fDate :
3/1/2008 12:00:00 AM
Firstpage :
959
Lastpage :
965
Abstract :
Servo motor drive systems with ball-screw and timing-belt are widely used in a numerical control, robot, factory automation and industrial applications. Most of the servo motor and drive system transfer the motor torque to loads via mechanical connections. However, the nonlinear friction of coupled mechanical devices reduces the performance of a servo drive. Especially, in a low speed range, tracking errors are serious due to the break-away friction and Stribeck effects. In this paper, a new dual speed controller is proposed for the compensation of nonlinear friction torque. The proposed dual speed controller has an outer speed controller and an inner friction torque compensator. The friction torque compensator adds additional torque corresponding to a nonlinear friction of mechanical devices, so the actual speed quickly tracks the reference value. Since the proposed nonlinear friction torque compensator uses the actual speed information without any motor parameters and mathematical model, the proposed compensator has a very simple structure and high stability. The proposed control scheme is verified by computer simulation and experimental results.
Keywords :
friction; permanent magnet motors; servomotors; synchronous motor drives; torque control; velocity control; Stribeck effects; break-away friction; dual speed control; inner friction torque compensator; motor torque; nonlinear friction compensation; numerical control; permanent magnet synchronous motors; servo drive system; Computer numerical control; Friction; Manufacturing automation; Motor drives; Robotics and automation; Service robots; Servomechanisms; Servomotors; Torque control; Velocity control; Permanent magnet synchronous motor (PMSM);
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2007.915046
Filename :
4463859
Link To Document :
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