Title of article :
Design and Optimization of the Dual-Stator Axial-Field Flux-Switching Permanent Magnet Motor with High-Torque Density and Low-cost
Author/Authors :
Farrokh ، F. Faculty of Electrical Engineering - Shahrood University of Technology , Vahedi ، A. Department of Electrical Engineering - Iran University of Science Technology , Torkaman ، H. Faculty of Electrical Engineering - Shahid Beheshti University , Banejad ، M. Faculty of Electrical Engineering - Shahrood University of Technology
From page :
1357
To page :
1368
Abstract :
In this paper, a new dual-stator axial field flux-switching permanent magnet (DSAFFSPM) motor has been proposed to improve the torque density and cost of the machine. In this topology, the 12-pole dual-stator has been located on both sides of one 10-pole inner-toothed rotor. The dual-stator has hosted permanent magnet (PM) type of Bar-PM and the coils. The novelty of this study is development of a technique that can be implemented on PM of the DSAFFSPM structure. In this regard, the proposed analytical design with a sizing equation has been presented and multi-objective optimization is employed to achieve the optimum size by Multi-Objective Genetic Algorithm (MOGA) method. The machine characteristics are acquired and analyzed utilizing the 3D finite element method (3D-FEM). A comparative study has been done to prove the superiority of the performance indices. This topology demonstrates the high-power density and the low vibration and noise due to lower torque ripple and cogging torque. Meanwhile, the Bar-PM topology has lower core loss and thermal stress due to high-efficiency. Consequently, the proposed model provides high torque density and low cost, specifically designed for electric vehicle (EVs) applications.
Keywords :
Dual , Stator Axial Field Flux , Switching , Machine , High , Torque Density , High , efficiency , Low , cost , Thermal Stress , Electric Vehicles
Journal title :
International Journal of Engineering
Journal title :
International Journal of Engineering
Record number :
2776978
Link To Document :
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