Title :
Analytical Prediction of Magnetic Field in Parallel Double Excitation and Spoke-Type Permanent-Magnet Machines Accounting for Tooth-Tips and Shape of Polar Pieces
Author :
Boughrara, Kamel ; Ibtiouen, Rachid ; Lubin, Thierry
Author_Institution :
LESI, Univ. de Khemis-Miliana, Khemis-Miliana, Algeria
fDate :
7/1/2012 12:00:00 AM
Abstract :
This paper presents an analytical method based on subdomain method for the computation of open circuit, armature reaction, and on-load magnetic field distribution in integer slot winding parallel double excitation and spoke-type tangential permanent-magnet machines. The proposed model takes into account for stator and rotor slots tooth tips and shape of polar piece. A 2-D exact analytical solution of magnetic field distribution is established. It involves solution of Laplace´s and Poisson´s equations in semi-closed stator and rotor slots, air-gap, buried permanent magnets into rotor semi-closed slots, and nonmagnetic region under magnets. Obtained exact analytical results of open circuit, armature reaction, and on-load magnetic field distribution are verified with those issued from the finite element method.
Keywords :
Laplace equations; Poisson equation; permanent magnet machines; rotors; stators; synchronous machines; 2D exact analytical solution; Laplace equation solution; Poisson equation solution; air-gap; analytical method; analytical prediction; armature reaction; buried permanent magnets; integer slot winding parallel double excitation; nonmagnetic region; on-load magnetic field distribution; open circuit computation; polar piece shape; rotor slot tooth tip; semiclosed rotor slot; semiclosed stator slot; spoke-type tangential permanent-magnet machines; stator slot tooth tip; subdomain method; Boundary conditions; Laplace equations; Magnetic fields; Permanent magnets; Rotors; Stator windings; Exact analytical calculation; finite element method; magnetic field distribution; parallel double excitation; spoke-type permanent-magnet machines;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2012.2186587