Title :
Analytical Computation of the Full Load Magnetic Losses in the Soft Magnetic Composite Stator of High-Speed Slotless Permanent Magnet Machines
Author :
Chebak, Ahmed ; Viarouge, Philippe ; Cros, Jérôme
Author_Institution :
LEEPCI Dept. of Electr. & Comput. Eng., Laval Univ., Quebec City, QC
fDate :
3/1/2009 12:00:00 AM
Abstract :
This paper presents an analytical model for predicting the stator full load magnetic losses in high-speed slotless permanent-magnet machines with surface-mounted magnets on the rotor and a stator core made of isotropic and conductive soft magnetic composite material (SMC). The losses are derived from the computation of the two-dimensional magnetic field distribution created by the rotor magnets, the currents in the stator windings and the eddy currents that circulate in the SMC stator core, according to the time and space harmonics. Both eddy currents and hysteresis losses are computed. The model is cross-validated by 2-D FE analysis in terms of magnetic field distribution and eddy currents losses. 3-D FE simulations are also carried out to quantify the end-effect on the stator no-load eddy current losses. The developed model is an efficient machine design tool, used here to quantify the variations of both the eddy currents and hysteresis losses under full load operation when the control angle is modified.
Keywords :
eddy current losses; finite element analysis; magnetic hysteresis; permanent magnet machines; stators; 2D FE analysis; 2D magnetic field distribution; eddy currents; full load magnetic losses; high-speed permanent magnet machines; hysteresis losses; rotor magnets; slotless permanent magnet machines; soft magnetic composite stator; stator windings; surface-mounted magnets; Eddy currents; SMC; hysteresis losses; permanent magnet; slotless machines; soft magnetic materials;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2009.2012478