An improved model of induction motors for diagnosis purposes – Slot skewing effect and air–gap eccentricity faults

This paper describes an improved method for the modeling of axial and radial eccentricities in induction motors (IM). The model is based on an extension of the modified winding function approach (MWFA) which allows for all harmonics of the magnetomotive force (MMF) to be taken into account. It is sh...

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Veröffentlicht in:Energy conversion and management 2009-05, Vol.50 (5), p.1336-1347
Hauptverfasser: Ghoggal, A., Zouzou, S.E., Razik, H., Sahraoui, M., Khezzar, A.
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Sprache:eng
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Zusammenfassung:This paper describes an improved method for the modeling of axial and radial eccentricities in induction motors (IM). The model is based on an extension of the modified winding function approach (MWFA) which allows for all harmonics of the magnetomotive force (MMF) to be taken into account. It is shown that a plane view of IM gets easily the motor inductances and reduces considerably the calculation process. The described technique includes accurately the slot skewing effect and leads to pure analytical expressions of the inductances in case of radial eccentricity. In order to model the static, dynamic or mixed axial eccentricity, three suitable alternatives are explained. Unlike the previous proposals, the discussed alternatives take into account all the harmonics of the inverse of air–gap function without any development in Fourier series. Simulation results as well as experimental verifications prove the usefulness and the effectiveness of the proposed model.
ISSN:0196-8904
1879-2227
DOI:10.1016/j.enconman.2009.01.003