DocumentCode :
63759
Title :
3-D–2-D Dynamic Magnetic Modeling of an Axial Flux Permanent Magnet Motor With Soft Magnetic Composites for Hybrid Electric Vehicles
Author :
Maloberti, Olivier ; Figueredo, Remi ; Marchand, Claude ; Choua, Yahya ; Condamin, Dominique ; Kobylanski, Luc ; Bomme, Edouard
Author_Institution :
ESIEE Amiens, Amiens, France
Volume :
50
Issue :
6
fYear :
2014
fDate :
Jun-14
Firstpage :
1
Lastpage :
11
Abstract :
Axial flux permanent magnet (AFPM) motors might be an efficient traction solution for hybrid and full electric vehicles. This technology makes the use of soft magnetic composites (SMC) attractive for both manufacturing and performance reasons. Eddy currents in the iron can provide a natural transient damper and/or flux weakener and the iron losses might be compensated by the high torque density of axial structures. The main problematics of magnetic modeling in AFPM motors made with bulk SMC teeth and poles are leakage at the ends, slots effects and finally damping and losses. This paper deals with the material and geometry-dependent magnetic modeling of such a 3-D machine for design purpose considering a maximum a priori effect. Section I begins with the context, state-of-the-art and the geometrical modeling compatible with axial structures. In Section II, the magnetic equivalent circuit (MEC) of the machine is built, then the quasi-static electromagnetic behavior is computed, with time and space harmonics in a steady state. Section III is dedicated to an investigation of magnetic damping and losses, inside lumped parameters, either in a steady state or in a transient state. In Section IV, provided calculations are compared with each other, to the finite element method and to measurements.
Keywords :
composite materials; eddy current losses; eddy currents; equivalent circuits; hybrid electric vehicles; magnetic leakage; permanent magnet motors; soft magnetic materials; torque; 3D machine; 3D-2D dynamic magnetic modeling; axial flux permanent magnet motor; axial structures; bulk soft magnetic composite teeth; eddy currents; efficient traction solution; flux weakener; full electric vehicle; geometry-dependent magnetic modeling; hybrid electric vehicles; iron losses; lumped parameters; magnetic damping; magnetic equivalent circuit; magnetic losses; natural transient damper; quasistatic electromagnetic behavior; slot effects; steady state; torque density; transient state; Damping; Magnetic circuits; Magnetic flux; Magnetomechanical effects; Rotors; Soft magnetic materials; Three-dimensional displays; Axial Flux Permanent Magnet Machines (AFPM); Axial flux permanent magnet machines (AFPMs); Flux Damping, Iron Losses; Hybrid Electrical Vehicles (HEV); Lumped Permeances; Magnetic Equivalent Circuit (MEC); Power and Efficiency – Speed Diagrams; Soft Magnetic Composites (SMC); Static and Dynamic Properties; Torque; flux damping; hybrid electrical vehicles (HEV); iron losses; lumped permeances; magnetic equivalent circuit (MEC); power-speed and efficiency-speed diagrams; soft magnetic composites (SMC); speed diagrams; static and dynamic properties; torque;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2014.2300152
Filename :
6714539
Link To Document :
بازگشت