Title :
Performance of PMASynRM With Ferrite Magnets for EV/HEV Applications Considering Productivity
Author :
Obata, M. ; Morimoto, Shigeo ; Sanada, Masayuki ; Inoue, Yasuyuki
Author_Institution :
Osaka Prefecture Univ., Sakai, Japan
Abstract :
Although motors that use rare-earth permanent magnets typically exhibit high performance, their cost is high, and there are concerns about the stability of the raw material supply. This paper proposes a permanent-magnet-assisted synchronous reluctance motor (PMASynRM) with a ferrite magnet that does not use rare-earth materials considering productivity. The performance of the proposed PMASynRM is evaluated based on the finite-element method and an experiment using a prototype machine. The analysis results reveal that the proposed PMASynRM has the same power density and an equivalent efficiency as rare-earth permanent-magnet synchronous motors for hybrid electric vehicles (2003 Toyota Prius). Furthermore, some experimental results are presented in order to validate the analytical results. As a result, the proposed PMASynRM was found to achieve high-power-density and high-efficiency performance.
Keywords :
ferrites; finite element analysis; hybrid electric vehicles; permanent magnet motors; reluctance motors; EV-HEV applications; PMASynRM; ferrite magnets; finite-element method; high-efficiency performance; high-power-density; hybrid electric vehicles; permanent-magnet-assisted synchronous reluctance motor; rare-earth permanent magnets; raw material supply stability; Demagnetization; Ferrites; Iron; Magnetic flux; Power generation; Rotors; Torque; Demagnetization; EV/HEV; Ferrite magnet; PMASynRM; electric vehicle/hybrid electric vehicle (EV/HEV); ferrite magnet; permanent-magnet-assisted synchronous reluctance motor (PMASynRM);
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2013.2294999