Logo image
Multi-Objective Optimization Design of In-Wheel Switched Reluctance Motors in Electric Vehicles
Journal article   Peer reviewed

Multi-Objective Optimization Design of In-Wheel Switched Reluctance Motors in Electric Vehicles

X D Xue, K W E Cheng, T W Ng and N C Cheung
IEEE transactions on industrial electronics (1982), Vol.57(9), pp.2980-2987
09/2010

Abstract

Copper Design Design optimization Electric motors Electric vehicles in-wheel Lamination optimization Reluctance machines Reluctance motors Rotors Stators switched reluctance motors (SRMs) Torque
The method of the optimization design with multi-objectives for switched reluctance motors (SRMs) in electric vehicles (EVs) is proposed in this paper. It is desired that electric motors for EVs have high torque, high efficiency, and high torque density. Thus, the developed optimization function is selected as the correct compromise between the maximum average torque, maximum average torque per copper loss, and maximum average torque per motor lamination volume, by using three weight factors and three base values. The stator and rotor pole arc angles are selected as the optimized variables. Furthermore, the authors also discuss the design requirements and some constraints on the optimization design. The results of the optimization design show that the proposed method meets the requirements of EVs on electric motors well. A prototype of the optimally designed in-wheel SRM for EVs has been manufactured. This paper provides a valuable method to implement the optimal design of SRMs for EVs.

Metrics

1 Record Views

Details

Logo image