DocumentCode :
809870
Title :
Investigation of the winding current distribution in a 4-quadrant-transducer prototype machine
Author :
Zheng, Ping ; Nordlund, Erik ; Thelin, Peter ; Sadarangani, Chandur
Author_Institution :
Sch. of Electr. Eng. & Autom., Harbin Inst. of Technol., China
Volume :
41
Issue :
5
fYear :
2005
fDate :
5/1/2005 12:00:00 AM
Firstpage :
1972
Lastpage :
1975
Abstract :
The 4-quadrant energy transducer (4QT) is a solution to realize both the torque and speed control of the internal combustion engine (ICE) for hybrid electric vehicles. Since the base frequency of the prototype 4QT is much higher than the industrial one, the effect of eddy current on winding current distribution is considered in this paper. A two-dimensional (2-D) eddy-current FEM model is established and used for analysis. Current density and strand current distribution are given. It is pointed out that owing to the effect of eddy current, the conductor currents are unevenly distributed within the strands of the same turn. According to the 2-D FEM analysis, when the uneven current distribution is considered, the average rms turn current is increased by 1.05 times for the stator and 1.65 times for the inner rotor, and the copper loss is increased by 1.1 times for the stator and 3.16 times for the inner rotor. Since the inner rotor slots are much deeper than the stator slots, the inner rotor current distribution is more uneven than the stator. It means that for high-frequency deep-slot machine the eddy current effect should be considered seriously. Because of the increased current and copper loss, more ventilation will be needed for the 4QT, especially for the inner rotor. The average torques of stator machine and double rotor machine meet the requirements, and the torque ripples are small owing to the skewed slots.
Keywords :
automotive electronics; current distribution; eddy currents; finite element analysis; hybrid electric vehicles; machine windings; torque control; velocity control; 4-quadrant energy transducer; copper loss; current density; double rotor machine; eddy current effect; eddy-current FEM model; high-frequency deep-slot machine; hybrid electric vehicles; internal combustion engine; prototype 4QT; skewed slots; speed control; stator machine; strand current distribution; torque control; torque ripples; winding current distribution; Copper; Current distribution; Eddy currents; Ice; Internal combustion engines; Machine windings; Prototypes; Stators; Transducers; Velocity control; 4-quadrant transducer; Copper loss; current distribution; eddy current;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2005.846279
Filename :
1431012
Link To Document :
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