Design, Optimization and Prototype of a Multi-Phase Fractional Slot Concentrated Windings Surface Mounted on Permanent Magnet Machine

The multi-phase permanent-magnet motors are suitable choices for certain purposes like aircrafts, marine, and electric vehicles due to the fault tolerance and high-power density capabilities. The paper aims to design and prototype an optimized five-phase fractional slot concentrated windings surface...

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Main Authors: Amir Nekoubin, Jafar Soltani, Milad Dowlatshahi
Format: Article
Language:English
Published: OICC Press 2024-02-01
Series:Majlesi Journal of Electrical Engineering
Subjects:
Online Access:https://oiccpress.com/mjee/article/view/4897
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author Amir Nekoubin
Jafar Soltani
Milad Dowlatshahi
author_facet Amir Nekoubin
Jafar Soltani
Milad Dowlatshahi
author_sort Amir Nekoubin
collection DOAJ
description The multi-phase permanent-magnet motors are suitable choices for certain purposes like aircrafts, marine, and electric vehicles due to the fault tolerance and high-power density capabilities. The paper aims to design and prototype an optimized five-phase fractional slot concentrated windings surface mounted permanent magnet motor. To optimize the designed multi-phase motor, a multi-objective optimization technique based on the genetic algorithm method has been applied. The machine design objectives are to minimize mass and loss, subsequently, to determine the best choice of the designed machine parameters. Afterwards, 2-Dimensional Finite Element Method (2D-FEM) has been used to verify the performance of the optimized machine. Finally, the optimized machine has been prototyped. The results of the prototyped machine have validated the results of the theatrical analyses of the machine, and accurate consideration of the parameters improved the performance of the machine.
format Article
id doaj-art-2d56acdfa43c40da97231eca16808935
institution DOAJ
issn 2345-377X
2345-3796
language English
publishDate 2024-02-01
publisher OICC Press
record_format Article
series Majlesi Journal of Electrical Engineering
spelling doaj-art-2d56acdfa43c40da97231eca168089352025-08-20T03:04:17ZengOICC PressMajlesi Journal of Electrical Engineering2345-377X2345-37962024-02-0114410.29252/mjee.14.4.75Design, Optimization and Prototype of a Multi-Phase Fractional Slot Concentrated Windings Surface Mounted on Permanent Magnet MachineAmir Nekoubin0Jafar Soltani1Milad Dowlatshahi2Department of Electrical Engineering, Khomeinishahr Branch, Islamic Azad University, Khomeinishahr/Isfahan, Iran.Department of Electrical Engineering, Khomeinishahr Branch, Islamic Azad University, Khomeinishahr/Isfahan, Iran.Department of Electrical Engineering, Khomeinishahr Branch, Islamic Azad University, Khomeinishahr/Isfahan, Iran.The multi-phase permanent-magnet motors are suitable choices for certain purposes like aircrafts, marine, and electric vehicles due to the fault tolerance and high-power density capabilities. The paper aims to design and prototype an optimized five-phase fractional slot concentrated windings surface mounted permanent magnet motor. To optimize the designed multi-phase motor, a multi-objective optimization technique based on the genetic algorithm method has been applied. The machine design objectives are to minimize mass and loss, subsequently, to determine the best choice of the designed machine parameters. Afterwards, 2-Dimensional Finite Element Method (2D-FEM) has been used to verify the performance of the optimized machine. Finally, the optimized machine has been prototyped. The results of the prototyped machine have validated the results of the theatrical analyses of the machine, and accurate consideration of the parameters improved the performance of the machine.https://oiccpress.com/mjee/article/view/4897Finite Element TechniqueMulti-Phase MachineOptimization techniquePermanent-Magnet
spellingShingle Amir Nekoubin
Jafar Soltani
Milad Dowlatshahi
Design, Optimization and Prototype of a Multi-Phase Fractional Slot Concentrated Windings Surface Mounted on Permanent Magnet Machine
Majlesi Journal of Electrical Engineering
Finite Element Technique
Multi-Phase Machine
Optimization technique
Permanent-Magnet
title Design, Optimization and Prototype of a Multi-Phase Fractional Slot Concentrated Windings Surface Mounted on Permanent Magnet Machine
title_full Design, Optimization and Prototype of a Multi-Phase Fractional Slot Concentrated Windings Surface Mounted on Permanent Magnet Machine
title_fullStr Design, Optimization and Prototype of a Multi-Phase Fractional Slot Concentrated Windings Surface Mounted on Permanent Magnet Machine
title_full_unstemmed Design, Optimization and Prototype of a Multi-Phase Fractional Slot Concentrated Windings Surface Mounted on Permanent Magnet Machine
title_short Design, Optimization and Prototype of a Multi-Phase Fractional Slot Concentrated Windings Surface Mounted on Permanent Magnet Machine
title_sort design optimization and prototype of a multi phase fractional slot concentrated windings surface mounted on permanent magnet machine
topic Finite Element Technique
Multi-Phase Machine
Optimization technique
Permanent-Magnet
url https://oiccpress.com/mjee/article/view/4897
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AT jafarsoltani designoptimizationandprototypeofamultiphasefractionalslotconcentratedwindingssurfacemountedonpermanentmagnetmachine
AT miladdowlatshahi designoptimizationandprototypeofamultiphasefractionalslotconcentratedwindingssurfacemountedonpermanentmagnetmachine