DocumentCode :
3737410
Title :
Electromagnetic design of a new hybrid-excited flux-switching machine for fault-tolerant operations
Author :
Fei Lin;K. T. Chau;Chunhua Liu;Chun Qiu;Chunhua Liu
Author_Institution :
Department of Electrical and Electronic Engineering, the University of Hong Kong, Hong Kong, China, Shenzhen Institute of Research and Innovation, the University of Hong Kong, Hong Kong
fYear :
2015
Firstpage :
2521
Lastpage :
2525
Abstract :
In this paper, a new hybrid-excited flux-switching (HEFS) machine is proposed with the outer-rotor configuration, which possesses the distinct feature of fault-tolerant operation. Comparing with the conventional permanent-magnet (PM) machine, it combines merits of flux control, high mechanical integrity, and low-cost. Furthermore, its fault-tolerant feature ensures its continuous operation in the event of winding faults. Hence, a new 12/10-pole HEFS machine is designed and implemented in this paper. By using time-stepping finite element method, open circuit (OC) fault and short circuit (SC) faults on the armature winding are investigated in the proposed machine for the fault-tolerant operation. The phase-current reconfiguration and flux control are applied for the remediation of the OC fault, while the SC faults is remedied by the phase-current reconfiguration merely. Both approaches demonstrate their good performances for the fault-tolerant operation.
Keywords :
"Circuit faults","Torque","Fault tolerance","Fault tolerant systems","Windings","Rotors","Stators"
Publisher :
ieee
Conference_Titel :
Industrial Electronics Society, IECON 2015 - 41st Annual Conference of the IEEE
Type :
conf
DOI :
10.1109/IECON.2015.7392481
Filename :
7392481
Link To Document :
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