A Complete Quasi-3-D Analytical Model of No-Load Magnetic Field of Double-Sided Slotted AFPMMs Considering End Effect

This paper presents a complete quasi-3-D analytical model combining the solution of Maxwell's equations and the magnetic equivalent circuit for the determination of no-load magnetic field distributions of slotted axial flux permanent magnet machines (AFPMMs) considering the end effect without u...

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Main Authors: Wenming Tong, Shuai Wang, Shengnan Wu, Renyuan Tang
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8488497/
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spelling doaj-9a571f84111a45f3b10b1e034409692e2021-03-29T21:32:03ZengIEEEIEEE Access2169-35362018-01-016595575956610.1109/ACCESS.2018.28753068488497A Complete Quasi-3-D Analytical Model of No-Load Magnetic Field of Double-Sided Slotted AFPMMs Considering End EffectWenming Tong0https://orcid.org/0000-0003-2280-0263Shuai Wang1Shengnan Wu2Renyuan Tang3National Engineering Research Center for Rare-Earth Permanent Magnet Machines, Shenyang University of Technology, Shenyang, ChinaNational Engineering Research Center for Rare-Earth Permanent Magnet Machines, Shenyang University of Technology, Shenyang, ChinaNational Engineering Research Center for Rare-Earth Permanent Magnet Machines, Shenyang University of Technology, Shenyang, ChinaNational Engineering Research Center for Rare-Earth Permanent Magnet Machines, Shenyang University of Technology, Shenyang, ChinaThis paper presents a complete quasi-3-D analytical model combining the solution of Maxwell's equations and the magnetic equivalent circuit for the determination of no-load magnetic field distributions of slotted axial flux permanent magnet machines (AFPMMs) considering the end effect without using 3-D finite element method (FEM). The effect of end effect on the air gap magnetic field distributions along the radial direction of AFPMMs is considered by introducing the end function. Moreover, based on the proposed analytical model, the method of adjusting the pole-arc ratio along the radial direction is adopted to solve the local saturation problem of the stator teeth at the inner radius when adopting the parallel slot structure. The relationship between the inner pole-arc ratio and the outer pole-arc ratio is obtained when the tooth flux densities are consistent along the radial direction. Finally, taking two AFPMM prototypes as examples, the analytical calculation results, 3-D FEM analyses and experiment results are compared to validate the accuracy of the analytical model.https://ieeexplore.ieee.org/document/8488497/Axial flux permanent magnet machinescomplete quasi-3D analytical modelslotting effectend effect
collection DOAJ
language English
format Article
sources DOAJ
author Wenming Tong
Shuai Wang
Shengnan Wu
Renyuan Tang
spellingShingle Wenming Tong
Shuai Wang
Shengnan Wu
Renyuan Tang
A Complete Quasi-3-D Analytical Model of No-Load Magnetic Field of Double-Sided Slotted AFPMMs Considering End Effect
IEEE Access
Axial flux permanent magnet machines
complete quasi-3D analytical model
slotting effect
end effect
author_facet Wenming Tong
Shuai Wang
Shengnan Wu
Renyuan Tang
author_sort Wenming Tong
title A Complete Quasi-3-D Analytical Model of No-Load Magnetic Field of Double-Sided Slotted AFPMMs Considering End Effect
title_short A Complete Quasi-3-D Analytical Model of No-Load Magnetic Field of Double-Sided Slotted AFPMMs Considering End Effect
title_full A Complete Quasi-3-D Analytical Model of No-Load Magnetic Field of Double-Sided Slotted AFPMMs Considering End Effect
title_fullStr A Complete Quasi-3-D Analytical Model of No-Load Magnetic Field of Double-Sided Slotted AFPMMs Considering End Effect
title_full_unstemmed A Complete Quasi-3-D Analytical Model of No-Load Magnetic Field of Double-Sided Slotted AFPMMs Considering End Effect
title_sort complete quasi-3-d analytical model of no-load magnetic field of double-sided slotted afpmms considering end effect
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2018-01-01
description This paper presents a complete quasi-3-D analytical model combining the solution of Maxwell's equations and the magnetic equivalent circuit for the determination of no-load magnetic field distributions of slotted axial flux permanent magnet machines (AFPMMs) considering the end effect without using 3-D finite element method (FEM). The effect of end effect on the air gap magnetic field distributions along the radial direction of AFPMMs is considered by introducing the end function. Moreover, based on the proposed analytical model, the method of adjusting the pole-arc ratio along the radial direction is adopted to solve the local saturation problem of the stator teeth at the inner radius when adopting the parallel slot structure. The relationship between the inner pole-arc ratio and the outer pole-arc ratio is obtained when the tooth flux densities are consistent along the radial direction. Finally, taking two AFPMM prototypes as examples, the analytical calculation results, 3-D FEM analyses and experiment results are compared to validate the accuracy of the analytical model.
topic Axial flux permanent magnet machines
complete quasi-3D analytical model
slotting effect
end effect
url https://ieeexplore.ieee.org/document/8488497/
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