DocumentCode :
425629
Title :
Design and control of a 2-dimensional electro-magnetic suspension actuator
Author :
Chen, M.-Y. ; Tsai, C.-F. ; Fu, L.-C.
Author_Institution :
Dept. of Electr. Eng., China Inst. of Technol., Taipei, China
Volume :
1
fYear :
2004
fDate :
2-4 Sept. 2004
Firstpage :
93
Abstract :
This paper proposed a special framework for positioning control of electro-magnetic suspension actuator (EMSA) system in multiple degrees of freedom (DOFs). A conceptual design of the EMSA system consists of a carrier and three active coils, which are utilized to provide the propulsion and levitation forces. The purpose of this research mainly focuses on stabilizing the positioning problem of the 2-D system with the purely non-contact magnetic forces. In view of the fact that a passive magnetic levitation system is an inherently unstable plant, therefore, in this study, we not only make one´s utmost to reform the configuration but also design a controller to achieve the stability. Due to the magnetic suspension systems are nonlinear and the existed modeling errors, we apply an adaptive sliding mode controller to eliminate the system´s uncertainties and to guarantee the whole system´s performance. Finally, from simulation results, the achievement of the required performance of regulation for guiding-axis and tracking for positioning-axis can be validated.
Keywords :
adaptive control; control system synthesis; electromagnetic actuators; magnetic levitation; nonlinear control systems; position control; stability; uncertain systems; variable structure systems; adaptive sliding mode controller; controller design; error modeling; guiding axis regulation; levitation forces; magnetic suspension systems; multiple DOF; multiple degrees of freedom; noncontact magnetic forces; nonlinear system; passive magnetic levitation system; position axis tracking; positioning control; propulsion forces; stabilization; three active coils; two dimensional electromagnetic suspension actuator control; two dimensional electromagnetic suspension actuator design; uncertain system elimination; Actuators; Coils; Control systems; Error correction; Magnetic forces; Magnetic levitation; Programmable control; Propulsion; Sliding mode control; Stability;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Applications, 2004. Proceedings of the 2004 IEEE International Conference on
Print_ISBN :
0-7803-8633-7
Type :
conf
DOI :
10.1109/CCA.2004.1387193
Filename :
1387193
Link To Document :
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