Title :
Analysis and design of a fault-tolerant six-phase permanent-magnet synchronous machine for electric vehicles
Author :
Chengde Tong ; Fan Wu ; Ping Zheng ; Yi Sui ; Luming Cheng
Author_Institution :
Dept. of Electr. Eng., Harbin Inst. of Technol., Harbin, China
Abstract :
The six-phase permanent-magnet synchronous machines (PMSMs), which use open winding concept and possess six degrees of freedom, is suitable for electric vehicle (EV) driving system for their high torque density, high efficiency and high fault-tolerant capability. Considering machine design, the possible slot and pole combinations are given and compared; a 24-slot/22-pole all-teeth-wound scheme is proposed and designed; the winding factor for all-teeth-wound winding is derived in detail, which is different from conventional double-layer winding; the eddy-current loss of permanent magnets is reduced by using segmentation technique. The fault-tolerant control for one and two-phase open faults are introduced through reconstructing a circular rotating magnetic field. In order to find the causes of torque ripple and excessive iron losses in the unbalanced phase-deficiency operation. The air-gap MMF harmonics in healthy, faulty and fault-tolerant controlled modes are analyzed.
Keywords :
eddy current losses; electric vehicles; fault tolerant control; machine control; machine windings; permanent magnet machines; synchronous machines; air-gap MMF harmonics; all-teeth-wound scheme; circular rotating magnetic field; double-layer winding; eddy-current loss; electric vehicle driving system; electric vehicles; fault-tolerant control; high torque density; iron loss; one-phase open faults; open winding concept; segmentation technique; six-phase PMSM; six-phase permanent-magnet synchronous machine; torque ripple; two-phase open faults; unbalanced phase-deficiency operation; winding factor; Fault tolerance; Fault tolerant systems; Harmonic analysis; Iron; Magnetic fields; Torque; Windings; Electric vehicles; fault tolerant; fractional slot concentrated winding; multiphase machine;
Conference_Titel :
Electrical Machines and Systems (ICEMS), 2014 17th International Conference on
Conference_Location :
Hangzhou
DOI :
10.1109/ICEMS.2014.7013738