DocumentCode :
4762
Title :
Eccentricity Related Forces in Two-Pole Induction Motor With Four-Pole Stator Damper Winding Analyzed Using Measured Rotor Orbits
Author :
Sinervo, Anssi ; Arkkio, Antero
Author_Institution :
Dept. of Electr. Eng., Aalto Univ., Aalto, Finland
Volume :
49
Issue :
6
fYear :
2013
fDate :
Jun-13
Firstpage :
3029
Lastpage :
3037
Abstract :
A two-pole induction motor has been fitted with an extra three-phase four-pole stator winding to damp the unbalanced magnetic pull caused by eccentricity. In traditional two-pole induction machines, the interaction of two- and four-pole flux produces most of the magnetic forces. That force is greatly reduced if the four-pole stator winding is used to damp the four-pole flux. This causes some of the other magnetic force components to become more significant. This paper presents an estimate of what components comprise the total force on rotor and how they change when the speed, torque, and two-pole flux density of the machine are changed. The rotor is on a long flexible shaft supported by external bearings allowing the forces to move the rotor. Since the magnetic force depends on rotor eccentricity, the comparisons are done to the magnetic stiffness derived from the force. The radial movement of the rotor is measured as well as the two-, four-, and zero-pole (unipolar, homopolar) air-gap magnetic flux densities. All the results are based on measurements with a prototype test machine.
Keywords :
induction motors; machine bearings; magnetic forces; stators; bearings; eccentricity related forces; four pole stator damper winding; magnetic force; magnetic stiffness; rotor orbit; torque; two pole flux density; two pole induction motor; unbalanced magnetic pull; Force; Magnetic forces; Magnetomechanical effects; Rotors; Stator windings; Windings; Bearingless machine; homopolar flux; induction machine; mechanical vibration; rotor dynamics; rotor eccentricity; self-bearing machine; slot harmonics; unbalanced magnetic pull; unipolar flux;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2013.2238637
Filename :
6408245
Link To Document :
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