Title :
Design and Analysis of a New Fault-Tolerant Permanent-Magnet Vernier Machine for Electric Vehicles
Author :
Liu, Guohai ; Yang, Junqin ; Zhao, Wenxiang ; Ji, Jinghua ; Chen, Qian ; Gong, Wensheng
Author_Institution :
Sch. of Electr. & Inf. Eng., Jiangsu Univ., Zhenjiang, China
Abstract :
This paper proposes a new outer-rotor fault-tolerant permanent-magnet vernier machine for electric vehicles. It can offer the advantages of high torque density, low-speed high-torque operation and inherently negligible coupling between phases, namely fault-tolerant characteristic. The key of the proposed machine is to newly introduce the flux-modulation poles which can effectively modulate the high-speed rotating field of the armature windings and the low-speed rotating field of the permanent-magnet (PM) outer rotor. In addition, single-layer and multi-phase fractional slot concentrated windings are adopted to improve fault tolerance. For the proposed machine, the relationship among the numbers of the stator slots, winding poles and PM pole pairs are analyzed and discussed. By using the time-stepping finite element method, the electromagnetic performances and the efficiency of the proposed machine are analyzed, verifying the effectiveness of the theoretical analysis.
Keywords :
electric vehicles; fault tolerance; finite element analysis; permanent magnet machines; rotors; synchronous motors; torque; armature windings; electric vehicle; electromagnetic performances; fault tolerant permanent magnet Vernier machine; flux modulation pole; high speed rotating field; high torque density; low speed high torque operation; multiphase fractional slot; negligible coupling; permanent magnet outer rotor; single layer fractional slot; time stepping finite element method; Current density; Fault tolerance; Fault tolerant systems; Gears; Rotors; Torque; Windings; Electric vehicles (EVs); fault-tolerant machine; finite-element method (FEM); permanent-magnet machine; vernier machine;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2012.2204042