DocumentCode
1313389
Title
Evaluation of Rotor-End Factors in Solid-Rotor Induction Motors
Author
Jagiela, Mariusz ; Garbiec, Tomasz
Author_Institution
Fac. of Electr. Eng., Autom. Control & Comput. Sci, Opole Univ. of Technol., Opole, Poland
Volume
48
Issue
1
fYear
2012
Firstpage
137
Lastpage
142
Abstract
Rotor-end factors are dimensionless quantities used in designing the solid-rotor induction motors to approximate the effects of finite length. It is well known that there are a few analytic estimates of these factors available. With certain, generally acceptable accuracy these match most of the configurations of motors with uniform rotors, but are not adequate for those containing axial slits. In this work, an appropriate three-dimensional model is proposed to numerically evaluate the factors of the rotor-end effect for the uniform (unslitted) and the axially slitted rotors having slits through the whole length. For the two cases these factors are expressed via ratios taken between the rotor powers calculated in three- and two-dimensional systems of coordinates, and are expressed as functions of frequency. The rotor-end factors obtained in such a way are different for the unslitted and slitted rotors. A notable improvement of accuracy is obtained in comparison with the traditional methodology when the numerically evaluated end-factors are used in the two-dimensional circuit-driven frequency-domain finite-element model to determine the motor characteristics.
Keywords
finite element analysis; induction motors; rotors; 2D circuit-driven frequency-domain finite-element model; 2D coordinate system; 3D coordinate system; 3D model; analytic estimates; axial slits; axially slitted rotor; finite length; motor characteristics; motor configurations; rotor powers; rotor-end effect; rotor-end factors; solid-rotor induction motors; uniform rotor; Current measurement; Harmonic analysis; Induction motors; Phase measurement; Power measurement; Rotors; Torque measurement; Eddy currents; end effects; finite-element analysis; induction motors; solid-rotor;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2011.2167019
Filename
6008650
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