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Triple-speed coaxial magnetic gear for wind turbine applications: introduction and comprehensive analysis

Ali Moghimi (Department of Engineering Faculty, Islamic Azad University, Central Tehran Branch, Tehran, Iran)
Mahmood Hosseini Aliabadi (Department of Engineering Faculty, Islamic Azad University, Central Tehran Branch, Tehran, Iran)
Hassan Feshki Farahani (Department of Engineering Faculty, Islamic Azad University, Ashtian Branch, Ashtian, Iran)

COMPEL - The international journal for computation and mathematics in electrical and electronic engineering

ISSN: 0332-1649

Article publication date: 15 April 2022

Issue publication date: 5 August 2022

108

Abstract

Purpose

This paper aims to introduce a new structure for coaxial magnetic gears.

Design/methodology/approach

The study discusses the design and electromagnetic modeling of a triple-speed coaxial magnetic gear (TSCMG) for three different levels of torques in special applications such as wind energy conversion and electrical vehicles. The proposed TSCMG consists of inner, middle and outer rotor, which has one rotor more than its conventional counterpart. The suggested TSCMG’s related equations such as transform ratio and torque are calculated, then TSCMG is simulated in a finite element environment. A comprehensive study has been done on TSCMG, and results are compared with two other magnetic gears with the same volume but two speeds.

Findings

The obtained results show that the proposed structure for TSCMGs is significantly practical and applicable in higher ranges of torques. Finally, an experimental TSCMG is prototyped to verify the results.

Originality/value

The achievements are excellent and confirm that TSCMG can be used as powerful equipment in a wide range of application like permanent wind turbines to generate electricity in 24 h per every single day.

Keywords

Citation

Moghimi, A., Hosseini Aliabadi, M. and Feshki Farahani, H. (2022), "Triple-speed coaxial magnetic gear for wind turbine applications: introduction and comprehensive analysis", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 41 No. 4, pp. 1223-1244. https://doi.org/10.1108/COMPEL-01-2022-0001

Publisher

:

Emerald Publishing Limited

Copyright © 2022, Emerald Publishing Limited

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