Design and Analysis of Switched Reluctance Motor with FEM Based Ansys-Maxwell

Author:

ÖZÜPAK Yıldırım1

Affiliation:

1. DİCLE ÜNİVERSİTESİ

Abstract

In this study, radial forces that create noise, which is a fundamental problem in Switched Reluctance Motor (SRM), are investigated. Since radial force causes stator vibrations and noise caused by magnetic field, a new switched reluctance motor model with increased stator and rotor poles has been designed in order to reduce the radial force acting on the rotor poles. In addition, a structure with high torque and low leakage flux compared to conventional winding structure has been proposed for Switched Reluctance Motors (SRM). The windings of the designed SRM are placed in layers, insulated from each other. Rotor poles are formed to move on both sides of each phase winding. Thus, the flux that will occur in the phase windings axially completes its circuit from the stator poles and the rotor poles. This designed ARM model has been examined by Finite Element Method (FEM. The proposed motor geometry has been analyzed with ANSYS Maxwell-3D, which performs FEM-based solution), and parametric analysis with ANSYS-RMxprt.

Publisher

Kyrgyz-Turkish Manas University

Subject

General Medicine

Reference14 articles.

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2. [2] Vijayraghavan, P., 2001. “Design of Switched Reluctance Motors and Development of a Universal Controller for Switched Reluctance and Permanent Magnet Brushless DC Motor Drives”, Faculty of the Virginia Polytechnic Institute and State University, Blacksburg, Virginia,

3. [3] Miller, T.J.E., 1993. “Switched Reluctance Motors and their Control”, Magna Physics Publishing and Clarendon Press, Oxford, İngiltere,

4. [4] Nasar, S.A., 1969. “DC Switched Reluctance Motor”, Proc. IEE, Cilt 116, No 6, 1048–1049,

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1. Influence of choosing materials on 6/4 switched reluctance motor performance;STUDIES IN ENGINEERING AND EXACT SCIENCES;2024-05-31

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