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Vol. 162, Issue 1, January 2014, pp. 273-279

 

Bullet

 

Structure Optimization and Performance Analysis of SRM with Amorphous Alloys Core using FEM
 

Yiduan CHEN, Huijuan LIU, Jingxiong ZHANG

School of Electrical Engineering, Beijing Jiaotong University, Beijing, 100044, China
Tel.: 010-51684831, fax: 010-51687101

E-mail: duanduan_happy90@163.com

 

Received: 16 October 2013 /Accepted: 9 January 2014 /Published: 31 January 2014

Digital Sensors and Sensor Sysstems

 

Abstract: This paper presents the performance computation of three-phase 6/4 poles Switched Reluctance Motor (SRM) with amorphous alloy core using transient Finite Element Analysis (FEA) in which the magnetic field is combined with a driving circuit. In order to minimize torque ripple in SRM, this paper proposes not only optimal combination of stator pole arc and rotor pole arc but also the turn-on and turn-off angles using parameterized transient FEA and response surface methodology (RSM). The magnetic fields distribution, the winding flux linkage, the phase inductance curve, the iron losses and the torque characteristics of the prototype SRM at low-speed are investigated. All studies show that the prototype SRM is potential to apply in home appliance applications.

 

Keywords: Switched reluctance motor (SRM), Amorphous alloys core, Finite element analysis (FEA), Response surface methodology (RSM), Parameterized transient FEA.

 

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