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Development of design tools for multiphase permanent magnet machines method based on the multi-machine approach

Scuiller, Franck (2006) Development of design tools for multiphase permanent magnet machines method based on the multi-machine approach. PhD thesis Génie Electrique, Institut de Recherche de l'Ecole Navale, ENSAM 2006ENAM0052 p.232.

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Abstract

This thesis tackles with the development of design tools dedicated to Permanent Magnet multiphase machines with smooth airgap supplied by Pulse Width Modulation Voltage Source Inverter. Based on the multi-machine decomposition that splits the multiphase machine into several fictitious

machines that are magnetically uncoupled and mechanically coupled, the chosen method consists in studying the converter-machine adaptation by putting the design goals on the fictitious machines. A matrix representation of the

multiphase winding, the development of analytical field calculation method and the use of the Discrete Fourier Transform operator allow to define for each fictitious machine a winding and a magnet layer. Thereby the goals and the constraints related to parasitic current reduction and torque quality improvement can be directly formulated on the fictitious quantities, which allows to deduce optimised design approach.

Item Type:PhD Thesis (PhD)
Thesis Supervisor:Clénet, Stéphane
Date:13 December 2006
Board of examiners:Louis, Jean-Paul and Meibody-Tabar, Farid and Zaim, El Hadi and Benbouzid, Mohamed and Viarouge, Philippe and Charpentier, Jean-Frédéric and Semail, Eric and Clénet, Stéphane and Letellier, Paul
Ecole Doctorale:ED 432 ECOLE DOCTORALE SCIENCES DES METIERS DE L'INGENIEUR
Discipline:Génie Electrique
Collection (Fonds):ENSAM
Institution:ENSAM
Department:Institut de Recherche de l'Ecole Navale
Subjects:5. Fluid Mechanics and Energy
Uncontrolled Keywords:Machine polyphasée, Machine synchrone à aimants permanents, Conception, Calcul analytique, Bobinage, Pas fractionnaire, Multimachine, Machine fictive, Transformée de Fourier Discrète, Multiphase machine, PM synchronous machine, Design approach, Analytical model, Winding, Fractional-slot pitch, Multi-machine, Fictitious machine, Discrete Fourier Transform
ID Code:2479
Deposited By:Christine Ollendorff
Deposited On:05 June 2007

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