Title :
Fuzzy compensation control for minimum torque ripple of switched reluctance motor system based on finite element model
Author :
Zhang, Jingjun ; Zhang, Haijun ; Gao, Ruizhen ; Wang, Lili
Author_Institution :
Heibei Univ. of Eng., Handan
Abstract :
The torque ripple is a major problem of switched reluctance motor drive system, which can cause undesirable acoustic noise and vibration. A novel method of torque closed-loop and fuzzy compensation control for the switched reluctance motor drive system based on finite element model is described in this paper. Under a switched reluctance motor drive system simulation environment, the geometry structure, electromagnetic parameters, outside drive circuit and control circuit are simulated and studied as a whole to analyze the nonlinear characteristics and dynamic characteristic of the motor. With a proposed control idea, the compensating signal is added to the phase current, the current shape can vary with the fuzzy control ruler to minimize the torque ripple. In the end, simulation results verify the effects of the proposed fuzzy compensation control technique.
Keywords :
acoustic noise; closed loop systems; compensation; finite element analysis; fuzzy control; machine control; reluctance motors; torque control; vibration control; acoustic noise; finite element model; fuzzy compensation control; minimum torque ripple; switched reluctance motor system; torque closed-loop control; vibration; Acoustic noise; Analytical models; Circuit simulation; Finite element methods; Fuzzy control; Fuzzy systems; Reluctance motors; Shape control; Solid modeling; Torque control; Finite element; Fuzzy compensation; Switched reluctance drive; Torque ripple;
Conference_Titel :
Industrial Electronics and Applications, 2008. ICIEA 2008. 3rd IEEE Conference on
Conference_Location :
Singapore
Print_ISBN :
978-1-4244-1717-9
Electronic_ISBN :
978-1-4244-1718-6
DOI :
10.1109/ICIEA.2008.4582964