Title :
Static and dynamic vibration analyses of switched reluctance motors including bearings, housing, rotor dynamics, and applied loads
Author :
Srinivas, K.N. ; Arumugam, R.
Author_Institution :
Dept. of Electr. & Electron. Eng., Crescent Eng. Coll., Chennai, India
fDate :
7/1/2004 12:00:00 AM
Abstract :
This paper presents a thorough numerical study of vibration analysis in electric motors, with particular application to switched reluctance motors (SRMs), using three-dimensional finite-element analysis (3-D FEA) methodology. It covers the major vibration sources: mechanical, magnetic, and applied load. The following analyses are presented. 1) A 3-D modal analysis including stator and rotor structures, shaft, end shields, bearings, and housing. 2) An unbalanced rotor dynamics analysis of the rotor, which is important for deciding on the eccentricity of the rotor mass to ensure that the vibration of rotor and housing is within acceptable limits. 3) A harmonic analysis to identify the range of speeds producing high vibration and noise that should be skipped over quickly during acceleration. 4) A stress analysis under different loading conditions (a simulation of load testing) to predict the deformation of the shaft and rotor. Apart from frequently reported modal analysis on the stator of SRMs in two dimensions, these 3-D vibration analyses are essential to examine the vibration in SRMs as a whole.
Keywords :
finite element analysis; harmonic analysis; modal analysis; reluctance motors; rotors; stress analysis; vibrations; 3D finite-element analysis; 3D modal analysis; 3D vibration analysis; applied loads; bearings; dynamic vibration analysis; electric motors; end shields; harmonic analysis; load testing simulation; loading conditions; pulleys; rotor deformation; rotor housing; rotor mass eccentricity; rotor structures; rotor vibration; shaft deformation; static vibration analysis; stator structures; stress analysis; switched reluctance motors; unbalanced rotor dynamics analysis; vibration sources; Electric motors; Harmonic analysis; Magnetic analysis; Modal analysis; Reluctance machines; Reluctance motors; Rotors; Shafts; Stators; Vibrations; End shields; loads and housing; pulleys; switched reluctance motor; three-dimensional finite-element analysis; vibration analysis including bearings;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2004.828034