Title :
Thermal Analysis of Permanent Magnet Motor for the Electric Vehicle Application Considering Driving Duty Cycle
Author :
Fan, JinXin ; Zhang, Chengning ; Wang, Zhifu ; Dong, Yugang ; Nino, C.E. ; Tariq, A.R. ; Strangas, E.G.
Author_Institution :
Nat. Eng. Lab. for Electr. Vehicle, Beijing Inst. of Technol., Beijing, China
fDate :
6/1/2010 12:00:00 AM
Abstract :
A lumped parameter thermal analysis of permanent magnet motor by considering real driving duty cycle is presented. As driving motors of electric vehicle, permanent magnet motors exhibit high efficiency and high power density. However, they are susceptible to suffer irreversible demagnetization and insulation failure of coils under severe thermal condition. Therefore, it is essential to accurately evaluate heat losses and precisely predict temperature distribution in driving motors under the real driving duty cycle. In this paper, an improved core loss model is employed and implemented by using finite element method. The thermal behavior of the driving motor is analyzed by means of lumped thermal parameter method. A test bench has been set up to measure the temperature distribution in the driving motor. The calculation and experiment results are compared and discussed.
Keywords :
demagnetisation; electric vehicles; finite element analysis; heat losses; permanent magnet motors; temperature distribution; thermal analysis; core loss model; driving duty cycle; driving motors; electric vehicle; finite element method; heat losses; irreversible demagnetization; lumped thermal parameter; permanent magnet motor; temperature distribution; Coils; Core loss; Demagnetization; Electric vehicles; Finite element methods; Insulation; Magnetic analysis; Permanent magnet motors; Temperature distribution; Testing; Core loss; driving duty cycle; electric vehicle; finite element method; lumped thermal parameters; permanent magnet motor; thermal analysis;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2010.2042043