DocumentCode :
138897
Title :
Performance analysis of E-Core hybrid excitation flux switching motorfor hybrid electric vehicle
Author :
Zakaria, S.N.U. ; Sulaiman, Erwan
Author_Institution :
Univ. Tun Hussein Onn Malaysia, Batu Pahat, Malaysia
fYear :
2014
fDate :
24-25 March 2014
Firstpage :
318
Lastpage :
323
Abstract :
In response to concerns about energy cost, energy dependence and environmental damage, a rekindling of interesting hybrid electric vehicles (HEVs) has been obvious. To accomplish the market needs, the expansion of electric motor for HEVs will take an accelerated rapidity. The Interior Permanent Magnet Synchronous motor (IPMSM)is one of successfully developed electric motor for HEV, due to its smaller size, lighter weight, and higher efficiency contributing to low battery consumption. On the other hand, IPMSM design tends to be complicated because permanent magnet (PM) is embedded in rotor core. The number of bridges around the PM and thickness are affect the mechanical strength of the machine, but high number of bridge degrades the maximum performances due to increase in leakage flux. As a result a new structure of E-Core hybrid excitation flux switching motor (HEFSM) with rugged rotor structure suitable for high-speed operation is proposed. The advantages of the E-Core HEFSM are high mechanical strength due to single piece rotor, less coil end, variable flux capabilities, less PM volume, and simpler structure for manufactured and design improvement. In this paper, preliminary study on E-Core HEFSM including armature coil test, flux enhancing, torque and power characteristics are analyzed by 2D-FEA for HEV applications.
Keywords :
electric vehicles; finite element analysis; magnetic flux; permanent magnet motors; rotors; synchronous motors; 2D-FEA; E-core hybrid excitation flux switching motor; HEFSM; HEV; IPMSM; armature coil test; battery consumption; coil end; electric motor; energy dependence; environmental damage; hybrid electric vehicle; interior permanent magnet synchronous motor; mechanical strength; rotor core; single piece rotor; variable flux capability; Coils; Couplings; Iron; Rotors; Stator windings; Torque;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Engineering and Optimization Conference (PEOCO), 2014 IEEE 8th International
Conference_Location :
Langkawi
Print_ISBN :
978-1-4799-2421-9
Type :
conf
DOI :
10.1109/PEOCO.2014.6814447
Filename :
6814447
Link To Document :
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