DocumentCode
3321236
Title
Torque ripple analysis of a permanent magnet brushless DC motor using finite element method
Author
Dai, Min ; Keyhani, Ali ; Sebastian, Tomy
Author_Institution
Ohio State Univ., Columbus, OH, USA
fYear
2001
fDate
2001
Firstpage
241
Lastpage
245
Abstract
Three-phase trapezoidal back-EMF PM machines are widely used. As a function of the rotor position, the torque produced by these machines has a pulsating component in addition to the DC component. This pulsating torque has a fundamental frequency corresponding to 6 pulses per electrical revolution of the motor. The shape of the torque waveform and thus the frequency content of the waveform can be influenced by several factors in the motor design and construction. This paper addresses the various motor design parameters that influence the torque wave shape. It is shown that in addition to the basic induced back-EMF wave shape, accuracy in the skewing is also a key factor in determining the torque wave shape. Computer simulation using the finite element technique has been conducted to study the torque waveform. Simulation results successfully duplicated the torque waveforms measured in experiments under different excitation currents
Keywords
brushless DC motors; electric machine analysis computing; finite element analysis; machine theory; permanent magnet motors; rotors; torque; computer simulation; excitation currents; finite element method; fundamental frequency; motor construction; motor design parameters; permanent magnet brushless DC motor; pulsating torque component; skewing accuracy; three-phase trapezoidal back-EMF PM machines; torque ripple analysis; torque wave shape; torque waveform shape; Brushless DC motors; Computational modeling; Computer simulation; DC motors; Finite element methods; Frequency; Magnetic analysis; Rotors; Shape; Torque;
fLanguage
English
Publisher
ieee
Conference_Titel
Electric Machines and Drives Conference, 2001. IEMDC 2001. IEEE International
Conference_Location
Cambridge, MA
Print_ISBN
0-7803-7091-0
Type
conf
DOI
10.1109/IEMDC.2001.939306
Filename
939306
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