DocumentCode
1755327
Title
Design of Synchronous Reluctance Motor for Hybrid Electric Vehicles
Author
Ferrari, Marco ; Bianchi, Nicola ; Doria, Alberto ; Fornasiero, Emanuele
Author_Institution
Dept. of Ind. Eng., Univ. of Padova, Padua, Italy
Volume
51
Issue
4
fYear
2015
fDate
July-Aug. 2015
Firstpage
3030
Lastpage
3040
Abstract
This paper deals with the design of a synchronous reluctance motor suited for hybrid electric vehicles. The focus is mainly on rotor design: the angles of the flux barrier ends are chosen with the aim of reducing the torque ripple due to the slot harmonics. A comparison among different rotor arrangements (one, two, and three flux barriers per pole) is presented. Furthermore, an improvement in terms of low ripple and high average torque is given owing to the “Machaon” configuration. The current vector control method is used to maximize the torque according to the voltage and current constraints, taking into account the saturation effects. The impact of the electrical design on the mechanical characteristics of the rotor (natural frequencies) is discussed as well. At last, the predicted mechanical characteristics of the reluctance motor are presented: torque versus speed behavior, power losses, and power factor. The efficiency map of the machine is also reported in the whole operating region.
Keywords
electric current control; hybrid electric vehicles; machine vector control; reluctance motors; rotors; torque control; Machaon configuration; current vector control method; efficiency map; flux barrier ends; hybrid electric vehicles; power factor; power losses; rotor design; saturation effects; slot harmonics; synchronous reluctance motor; torque ripple; Analytical models; Harmonic analysis; Iron; Reluctance motors; Rotors; Stators; Torque; Analytical model; efficiency map; mechanical vibrations; reluctance machine; vehicles;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/TIA.2015.2410262
Filename
7055295
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