Optimized coil and current flow designs for wireless charging containers with improved even magnetic flux density distribution

Abstract This paper introduces three different shapes of wireless charging containers (i.e. quadrangular prism, octagonal prism, and hexagonal prism) and presents optimal current flow designs for the coils to enhance the uniformity of magnetic flux distribution inside the containers. Additionally, t...

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Main Authors: Rui Liang, Kaiyuan Wang, Zhen Sun, Junming Zeng, Siyang Liu, Huihuan Wu, Yun Yang
Format: Article
Language:English
Published: Wiley 2024-11-01
Series:IET Power Electronics
Subjects:
Online Access:https://doi.org/10.1049/pel2.12705
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author Rui Liang
Kaiyuan Wang
Zhen Sun
Junming Zeng
Siyang Liu
Huihuan Wu
Yun Yang
author_facet Rui Liang
Kaiyuan Wang
Zhen Sun
Junming Zeng
Siyang Liu
Huihuan Wu
Yun Yang
author_sort Rui Liang
collection DOAJ
description Abstract This paper introduces three different shapes of wireless charging containers (i.e. quadrangular prism, octagonal prism, and hexagonal prism) and presents optimal current flow designs for the coils to enhance the uniformity of magnetic flux distribution inside the containers. Additionally, the concept of folded coil design is introduced to further improve the even distribution of magnetic flux density within the containers. The performance of these designs is evaluated through simulations and practical experiments.
format Article
id doaj-art-2745a40784a543a99fafe64152b9c04d
institution Kabale University
issn 1755-4535
1755-4543
language English
publishDate 2024-11-01
publisher Wiley
record_format Article
series IET Power Electronics
spelling doaj-art-2745a40784a543a99fafe64152b9c04d2024-12-11T15:05:42ZengWileyIET Power Electronics1755-45351755-45432024-11-0117152228223710.1049/pel2.12705Optimized coil and current flow designs for wireless charging containers with improved even magnetic flux density distributionRui Liang0Kaiyuan Wang1Zhen Sun2Junming Zeng3Siyang Liu4Huihuan Wu5Yun Yang6Department of Electrical and Electronic Engineering The Hong Kong Polytechnic University Hong Kong ChinaSchool of Electrical and Electronic Engineering Nanyang Technological University Singapore SingaporeSchool of Electrical and Electronic Engineering Nanyang Technological University Singapore SingaporeSchool of Electrical and Electronic Engineering Nanyang Technological University Singapore SingaporeDepartment of Electrical and Electronic Engineering The Hong Kong Polytechnic University Hong Kong ChinaDepartment of Electrical and Electronic Engineering The Hong Kong Polytechnic University Hong Kong ChinaSchool of Electrical and Electronic Engineering Nanyang Technological University Singapore SingaporeAbstract This paper introduces three different shapes of wireless charging containers (i.e. quadrangular prism, octagonal prism, and hexagonal prism) and presents optimal current flow designs for the coils to enhance the uniformity of magnetic flux distribution inside the containers. Additionally, the concept of folded coil design is introduced to further improve the even distribution of magnetic flux density within the containers. The performance of these designs is evaluated through simulations and practical experiments.https://doi.org/10.1049/pel2.12705coilselectric current controlelectromagnetic inductioninductive power transmissionmagnetic flux
spellingShingle Rui Liang
Kaiyuan Wang
Zhen Sun
Junming Zeng
Siyang Liu
Huihuan Wu
Yun Yang
Optimized coil and current flow designs for wireless charging containers with improved even magnetic flux density distribution
IET Power Electronics
coils
electric current control
electromagnetic induction
inductive power transmission
magnetic flux
title Optimized coil and current flow designs for wireless charging containers with improved even magnetic flux density distribution
title_full Optimized coil and current flow designs for wireless charging containers with improved even magnetic flux density distribution
title_fullStr Optimized coil and current flow designs for wireless charging containers with improved even magnetic flux density distribution
title_full_unstemmed Optimized coil and current flow designs for wireless charging containers with improved even magnetic flux density distribution
title_short Optimized coil and current flow designs for wireless charging containers with improved even magnetic flux density distribution
title_sort optimized coil and current flow designs for wireless charging containers with improved even magnetic flux density distribution
topic coils
electric current control
electromagnetic induction
inductive power transmission
magnetic flux
url https://doi.org/10.1049/pel2.12705
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AT kaiyuanwang optimizedcoilandcurrentflowdesignsforwirelesschargingcontainerswithimprovedevenmagneticfluxdensitydistribution
AT zhensun optimizedcoilandcurrentflowdesignsforwirelesschargingcontainerswithimprovedevenmagneticfluxdensitydistribution
AT junmingzeng optimizedcoilandcurrentflowdesignsforwirelesschargingcontainerswithimprovedevenmagneticfluxdensitydistribution
AT siyangliu optimizedcoilandcurrentflowdesignsforwirelesschargingcontainerswithimprovedevenmagneticfluxdensitydistribution
AT huihuanwu optimizedcoilandcurrentflowdesignsforwirelesschargingcontainerswithimprovedevenmagneticfluxdensitydistribution
AT yunyang optimizedcoilandcurrentflowdesignsforwirelesschargingcontainerswithimprovedevenmagneticfluxdensitydistribution