Coupled Circuit and Magnetic Model for a Transverse Flux Permanent Magnet Linear Motor

In this paper, a strong coupling between magnetic and electric phenomena is provided allowing to have an accurate and high-speed coupled model. A coupled circuit and magnetic model for an E-core transverse flux permanent magnet linear motor (TFPMLM) is proposed, which has an advantage linked to redu...

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Main Authors: Dongshan Fu, Jinlin Gong, Yanliang Xu, Frederic Gillon, Nicolas Bracikowski
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9180311/
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spelling doaj-604d69c6567e4d78b2882e6adb0b132a2021-03-30T03:31:03ZengIEEEIEEE Access2169-35362020-01-01815927415928310.1109/ACCESS.2020.30202589180311Coupled Circuit and Magnetic Model for a Transverse Flux Permanent Magnet Linear MotorDongshan Fu0https://orcid.org/0000-0003-3425-3738Jinlin Gong1https://orcid.org/0000-0002-5182-2704Yanliang Xu2https://orcid.org/0000-0001-8284-4271Frederic Gillon3Nicolas Bracikowski4Jiangsu Province Laboratory of Mining Electric and Automation, China University of Mining and Technology, Xuzhou, ChinaSchool of Electrical Engineering, Shandong University, Jinan, ChinaSchool of Electrical Engineering, Shandong University, Jinan, ChinaEcole Centrale de Lille, Engineering School of Arts et Métiers ParisTech, University of Lille, Lille, FranceIREENA Laboratory, University of Nantes, Saint-Nazaire, FranceIn this paper, a strong coupling between magnetic and electric phenomena is provided allowing to have an accurate and high-speed coupled model. A coupled circuit and magnetic model for an E-core transverse flux permanent magnet linear motor (TFPMLM) is proposed, which has an advantage linked to reducing time computing more than ten times when compared to 3-D finite-element model (FEM). Firstly, a multi-plane flexible-mesh nonlinear equivalent magnetic network (EMN) model is proposed to improve the computation efficiency as well as the high precision of the magnetic model. And a new method to define the converged iterative process is presented to further decrease the computing time. Secondly, the magnetic circuit and electric circuit are normalized into a solution matrix by introducing controlled sources and discretization methods which forms the coupled model. Then, the magnetic flux in the magnetic circuits and the current in the electric circuits are obtained simultaneously for each time step. The characteristics such as the air-gap flux density distribution, output thrust force waveforms and the phase currents are analyzed by the proposed coupled model. The modeling approach is approved by comparison with the 3-D FEM model. Finally, the proposed model is validated through the experimental setup with the machine prototype.https://ieeexplore.ieee.org/document/9180311/Coupled modelelectric circuitequivalent magnetic network (EMN)linear motortransverse flux
collection DOAJ
language English
format Article
sources DOAJ
author Dongshan Fu
Jinlin Gong
Yanliang Xu
Frederic Gillon
Nicolas Bracikowski
spellingShingle Dongshan Fu
Jinlin Gong
Yanliang Xu
Frederic Gillon
Nicolas Bracikowski
Coupled Circuit and Magnetic Model for a Transverse Flux Permanent Magnet Linear Motor
IEEE Access
Coupled model
electric circuit
equivalent magnetic network (EMN)
linear motor
transverse flux
author_facet Dongshan Fu
Jinlin Gong
Yanliang Xu
Frederic Gillon
Nicolas Bracikowski
author_sort Dongshan Fu
title Coupled Circuit and Magnetic Model for a Transverse Flux Permanent Magnet Linear Motor
title_short Coupled Circuit and Magnetic Model for a Transverse Flux Permanent Magnet Linear Motor
title_full Coupled Circuit and Magnetic Model for a Transverse Flux Permanent Magnet Linear Motor
title_fullStr Coupled Circuit and Magnetic Model for a Transverse Flux Permanent Magnet Linear Motor
title_full_unstemmed Coupled Circuit and Magnetic Model for a Transverse Flux Permanent Magnet Linear Motor
title_sort coupled circuit and magnetic model for a transverse flux permanent magnet linear motor
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description In this paper, a strong coupling between magnetic and electric phenomena is provided allowing to have an accurate and high-speed coupled model. A coupled circuit and magnetic model for an E-core transverse flux permanent magnet linear motor (TFPMLM) is proposed, which has an advantage linked to reducing time computing more than ten times when compared to 3-D finite-element model (FEM). Firstly, a multi-plane flexible-mesh nonlinear equivalent magnetic network (EMN) model is proposed to improve the computation efficiency as well as the high precision of the magnetic model. And a new method to define the converged iterative process is presented to further decrease the computing time. Secondly, the magnetic circuit and electric circuit are normalized into a solution matrix by introducing controlled sources and discretization methods which forms the coupled model. Then, the magnetic flux in the magnetic circuits and the current in the electric circuits are obtained simultaneously for each time step. The characteristics such as the air-gap flux density distribution, output thrust force waveforms and the phase currents are analyzed by the proposed coupled model. The modeling approach is approved by comparison with the 3-D FEM model. Finally, the proposed model is validated through the experimental setup with the machine prototype.
topic Coupled model
electric circuit
equivalent magnetic network (EMN)
linear motor
transverse flux
url https://ieeexplore.ieee.org/document/9180311/
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AT jinlingong coupledcircuitandmagneticmodelforatransversefluxpermanentmagnetlinearmotor
AT yanliangxu coupledcircuitandmagneticmodelforatransversefluxpermanentmagnetlinearmotor
AT fredericgillon coupledcircuitandmagneticmodelforatransversefluxpermanentmagnetlinearmotor
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