DocumentCode :
55011
Title :
Design of a Low-Torque-Ripple Fractional-Slot Interior Permanent-Magnet Motor
Author :
Alberti, Luigi ; Barcaro, Massimo ; Bianchi, Nicola
Author_Institution :
Fac. of Sci. & Technol., Free Univ. of Bozen, Bolzano, Italy
Volume :
50
Issue :
3
fYear :
2014
fDate :
May-June 2014
Firstpage :
1801
Lastpage :
1808
Abstract :
Despite a strong nonlinear behavior and a complex design, the interior permanent-magnet (IPM) machine is proposed as a good candidate among the PM machines owing to its interesting peculiarities, i.e., higher torque in flux-weakening operation, higher fault tolerance, and ability to adopt low-cost PMs. A second trend in designing PM machines concerns the adoption of fractional-slot (FS) nonoverlapped coil windings, which reduce the end winding length and consequently the Joule losses and the cost. Therefore, the adoption of an IPM machine with an FS winding aims to combine both advantages: high torque and efficiency in a wide operating region. However, the combination of an anisotropic rotor and an FS winding stator causes some problems. The interaction between the magnetomotive force harmonics due to the stator current and the rotor anisotropy causes a very high torque ripple. This paper illustrates a procedure in designing an IPM motor with the FS winding exhibiting a low torque ripple. The design strategy is based on two consecutive steps: at first, the winding is optimized by taking a multilayer structure, and then, the rotor geometry is optimized by adopting a nonsymmetric structure. As an example, a 12-slot 10-pole IPM machine is considered, achieving a torque ripple lower than 1.5% at full load.
Keywords :
losses; machine theory; magnetic anisotropy; permanent magnet motors; rotors; stators; torque; Joule loss; anisotropic rotor; fractional slot interior permanent magnet motor; fractional-slot nonoverlapped coil winding; low torque ripple permanent magnet motor; magnetomotive force harmonics; multilayer structure; nonsymmetric structure; rotor anisotropy; rotor geometry optimization; stator current; winding optimization; Analytical models; Geometry; Harmonic analysis; Rotors; Stator windings; Torque; Windings; Fractional-slot winding; interior permanent-magnet motor; torque ripple reduction;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2013.2285954
Filename :
6634239
Link To Document :
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