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