DocumentCode :
19170
Title :
Identification and Compensation of Nonlinear Friction Characteristics and Precision Control for a Linear Motor Stage
Author :
Chih-Jer Lin ; Her-Terng Yau ; Yun-Cheng Tian
Author_Institution :
Grad. Inst. of Autom. & Technol., Nat. Taipei Univ. of Technol., Taipei, Taiwan
Volume :
18
Issue :
4
fYear :
2013
fDate :
Aug. 2013
Firstpage :
1385
Lastpage :
1396
Abstract :
The main goal of this investigation is to improve the tracking accuracy of the stage of a linear motor. A DC brushless linear motor is used to actuate a gantry stage to perform printing. To compensate for the tracking error of the gantry stage that is associated with nonlinear friction, the dynamics of the nonlinear static friction are formulated using the Hsieh-Pan model. Particle swarm optimization (PSO), genetic algorithm, and real-coded genetic algorithm-based optimization problems are investigated to evaluate the parameters of the nonlinear friction model. The use of PSO-based optimization to tune the parameters of a disturbance-observer-based variable structure controller is also discussed to improve the tracking response. To check the consistency of the proposed controller, it is implemented in real time and an improved positional accuracy better than 0.1 μm is readily achieved.
Keywords :
brushless DC motors; error compensation; genetic algorithms; linear motors; machine control; nonlinear dynamical systems; observers; particle swarm optimisation; position control; printing; stiction; variable structure systems; DC brushless linear motor; Hsieh-Pan model; PSO-based optimization; disturbance observer-based variable structure controller; gantry stage; nonlinear friction characteristics compensation; nonlinear friction characteristics identification; nonlinear static friction dynamics; parameter evaluation; particle swarm optimization; precision control; printing; real coded genetic algorithm-based optimization; tracking error compensation; tracking response; Brushless motors; Dynamics; Force; Friction; Genetic algorithms; Mathematical model; Optimization; Disturbance observer (DO); genetic algorithm (GA); linear servomotor; particle swarm optimization (PSO); variable structure control (VSC);
fLanguage :
English
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
Publisher :
ieee
ISSN :
1083-4435
Type :
jour
DOI :
10.1109/TMECH.2012.2202679
Filename :
6218779
Link To Document :
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