DocumentCode
680613
Title
Current loop controller design for torque ripple suppression of switched reluctance motors
Author
Guan-Wei Su ; Ming-Yang Cheng ; Wen-Chun Chi
Author_Institution
Dept. of Electr. Eng., Nat. Cheng Kung Univ., Tainan, Taiwan
fYear
2013
fDate
2-4 Dec. 2013
Firstpage
496
Lastpage
500
Abstract
Due to attractive features such as low cost and highly robust, the demand for Switched Reluctance Motors has reached an all-time high. However, the torque ripple caused by the inherent double salient structure of SRMs leads to speed ripple as well. In order to cope with the aforementioned torque/speed ripple problem, many studies rely on sophisticated control techniques. However, in most of the previous studies the powerful Digital-Signal-Processor is used to realize these sophisticated control schemes since their complicated structures require massive computing power. The fact that the DSP-based solution is not cost effective results in a conflict with the original benefits of SRMs. To cope with the aforementioned problems, this paper employs a variable gain PI-type controller to suppress the torque ripples of SRMs. In order to have a cost effective solution, all the motor drive algorithms and control schemes are implemented using a low cost microcontroller in this paper. Experimental results show that the torque ripple has been significantly reduced so as to verify the effectiveness of the proposed control approach.
Keywords
PI control; digital signal processing chips; electric current control; microcontrollers; reluctance motor drives; torque; DSP-based solution; PI-type controller; SRM; current loop controller design; digital-signal-processor; inherent double salient structure; microcontroller; motor drive algorithm; switched reluctance motor; torque ripple suppression; torque-speed ripple problem; Gain; Hysteresis; Mathematical model; Reluctance motors; Rotors; Torque; Switched reluctance motor; current loop control; torque ripple suppression;
fLanguage
English
Publisher
ieee
Conference_Titel
Automatic Control Conference (CACS), 2013 CACS International
Conference_Location
Nantou
Print_ISBN
978-1-4799-2384-7
Type
conf
DOI
10.1109/CACS.2013.6734185
Filename
6734185
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