Título
Influence of manufacturing tolerances and eccentricities on the unbalanced magnetic pull in permanent magnet synchronous motorsAutor-a (de otra institución)
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© 2020 IEEEAcceso
Acceso abiertoVersión del editor
https://doi.org/10.1109/ICEM49940.2020.9270843Publicado en
Proceedings - 2020 International Conference on Electrical Machines, ICEM 2020. Gothenburg, 23 August 2020. N. artículo 9270843. Pp. 1363-1369Editor
IEEEPalabras clave
Stators
Rotors
Coordinate measuring machines
Magnetic field measurement ... [+]
Rotors
Coordinate measuring machines
Magnetic field measurement ... [+]
Stators
Rotors
Coordinate measuring machines
Magnetic field measurement
Iron
Position measurement
Harmonic analysis [-]
Rotors
Coordinate measuring machines
Magnetic field measurement
Iron
Position measurement
Harmonic analysis [-]
Resumen
Eccentricity is an inevitable fault in electric motors and hence its diagnosis is an important topic. Thus, the influence of static and dynamic eccentricities on the harmonics of the frequency spectra ... [+]
Eccentricity is an inevitable fault in electric motors and hence its diagnosis is an important topic. Thus, the influence of static and dynamic eccentricities on the harmonics of the frequency spectra of the unbalanced magnetic pull is analyzed.In this study, dimensional tolerances of the rotor and the stator are also considered. All parts have dimensional tolerances in their designs and their real magnitudes vary to some extent from the theoretical values after the manufacturing process. Thanks to the finite element simulations, verified with experimental results, it is observed that the deviations originated by the manufacturing tolerances produce changes in the amplitudes of some harmonics and also additional and characteristic harmonics in the frequency spectra of the unbalanced magnetic pull. These are not negligible and must be taken into account when robust eccentricity detection procedures are defined. Otherwise, harmonics originated by tolerances and by eccentricities can be misidentified. [-]
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