DocumentCode :
1433966
Title :
A novel two-phase BPM drive system with high power density and low cost
Author :
Li, Yue ; Walls, Todd A. ; Lloyd, Jerry D. ; Skinner, James L.
Author_Institution :
Emerson Motor Technol. Center, US Electrical Motors, St. Louis, MO, USA
Volume :
34
Issue :
5
fYear :
1998
Firstpage :
1072
Lastpage :
1080
Abstract :
A novel brushless permanent-magnet (BPM) motor drive system is proposed in this paper. The basic motor structure consists of a stator with four salient pole pieces and a six-pole permanent-magnet rotor. The proposed drive system, using four switches, fully utilizes the stator ampere turns by providing 180 electrical degree bipolar current conduction. Hence, the use of motor materials is maximized and very high power density is achieved. In addition, the quasi-square-wave back EMF and matching current waveshape guarantee minimum peak current stress on the drive. The low stress on the power devices and efficient use of active materials result in a drive system with a lower cost than conventional three-phase BPM drives of comparable output power. The advantages of the proposed system over three-phase BPM motor drives is illustrated using sizing analysis, finite-element analysis, time-domain simulations, and experimental studies. It can be expected that a variety of industrial applications will follow up on this new technology
Keywords :
AC motor drives; brushless machines; finite element analysis; permanent magnet motors; stators; time-domain analysis; 2-phase brushless permanent-magnet motor drive; bipolar current conduction; comparable output power; finite-element analysis; high power density; low cost; matching current waveshape; minimum peak current stress; quasi-square-wave back EMF; salient pole; six-pole permanent-magnet rotor; sizing analysis; stator; stator ampere turns; switches; time-domain simulations; Conducting materials; Costs; Finite element methods; Motor drives; Power generation; Rotors; Stators; Stress; Switches; Time domain analysis;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/28.720447
Filename :
720447
Link To Document :
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