Title :
Permanent Magnet Assisted Synchronous Reluctance Machine with fractional-slot winding configurations
Author :
Xiao Chen ; Jiabin Wang ; Lazari, Panagiotis ; Liang Chen
Author_Institution :
Dept. of Electron. & Electr. Eng., Univ. of Sheffield, Sheffield, UK
Abstract :
This paper evaluates suitability of factional-slot winding configurations for Permanent Magnet Assisted Synchronous Reluctance Machine (PMA-SynRM) for applications in Electric Vehicle (EV) traction. Three typical factional-slot winding configurations, viz., concentrated nonoverlapping (12-slot 10-pole), conventional non-overlapping (12-slot 8-pole), and the overlapping (18-slot 8-pole) winding are employed for design of PMA-SynRM in order to improve power factor and torque density, and to reduce torque ripple and end-winding length over the conventional PMA-SynRM with distributed windings. All three machines are optimized against New European Drive Cycle (NEDC) efficiency via finite element analysis and thereafter compared quantitatively to evaluate their overall performance for EV traction applications. It is shown that PMA-SynRM with concentrated fractional-slot non-overlapping winding is more suited for in-wheel motor where the maximum speed is low, whilst the machines with the conventional fractional-slot non-overlapping winding and the fractional-slot overlapping winding exhibit high reluctance torque, high efficiency over a wide region and desirable flux weakening capability, thereby being attractive for high speed machines with reduction gear in EV traction applications.
Keywords :
electric vehicles; finite element analysis; machine windings; permanent magnet machines; synchronous machines; traction; EV traction; NEDC efficiency; PMA-SynRM design; concentrated nonoverlapping winding; conventional nonoverlapping winding; distributed windings; electric vehicle traction; end-winding length; finite element analysis; flux weakening capability; fractional slot winding configurations; in-wheel motor; new European drive cycle efficiency; permanent magnet-assisted synchronous reluctance machine; power factor; reduction gear; reluctance torque; torque density; torque ripple reduction; Harmonic analysis; Iron; Rotors; Stator windings; Torque; Windings; Electric Vehicle; Fractional-slot winding; Permanent Magnet Assisted Synchronous Reluctance Machine (PMA-SynRM);
Conference_Titel :
Electric Machines & Drives Conference (IEMDC), 2013 IEEE International
Conference_Location :
Chicago, IL
Print_ISBN :
978-1-4673-4975-8
Electronic_ISBN :
978-1-4673-4973-4
DOI :
10.1109/IEMDC.2013.6556278