Title :
Analysis of radial force harmonics in PMSM responsible for electromagnetic noise
Author :
La Delfa, Patricio ; Hecquet, Michel ; Gillon, Frederic ; Le Besnerais, Jean
Author_Institution :
L2EP, Ecole Centrale de Lille, Villeneuve d´Ascq, France
fDate :
March 31 2015-April 2 2015
Abstract :
This paper presents an analysis of the air gap radial Maxwell forces in some three-phase, inner rotor Concentrated Winding surface Permanent Magnet Synchronous Machine (CW-PMSM). Two modular winding machines and one asymmetric, winding machine are considered and simulated by a Finite Element method (FE). The air gap Maxwell pressure results from multiplication of the flux density harmonics due to magnetomotive forces and permeance linked to the magnet, to the armature, to the stator slots and their interactions. An analytical prediction tool, (Analytical Calculation of Harmonic Force Orders -ACHFO) calculates the space and time orders of theses magnetic force harmonics while identifying their origin in terms of, interactions between magnet, armature and teeth effects. Additionally, an experimental Operational Deflection Shape measurement (ODS) is realised, for one modular machine prototype, to validate the electromagnetic model results. Finally the analytical prediction of ACHFO is compared with another method to obtain the origin of low orders radial pressure based on radial flux density convolution combination approach.
Keywords :
finite element analysis; machine insulation; machine windings; magnetic flux; magnetic forces; permanent magnet machines; rotors; stators; synchronous machines; ACHFO; CW-permanent magnet synchronous machine; FE method; ODS; air gap radial Maxwell force analysis; analytical calculation of harmonic force order; asymmetric winding machine; electromagnetic noise; finite element method; flux density harmonics multiplication; magnetomotive force; modular winding machine; operational deflection shape measurement; radial flux density convolution combination approach; radial force harmonics analysis; stator; three-phase inner rotor concentrated winding surface PMSM; Atmospheric modeling; Convolution; Force; Harmonic analysis; Magnetic flux; Magnetoacoustic effects; Stators; Maxwell forces; air gap radial pressure- space order frequency; analytical tool; convolution analysis; finite element analysis; magnetic noise;
Conference_Titel :
Ecological Vehicles and Renewable Energies (EVER), 2015 Tenth International Conference on
Conference_Location :
Monte Carlo
Print_ISBN :
978-1-4673-6784-4
DOI :
10.1109/EVER.2015.7112945