Analysis of mutual inductance and coupling factor of inductively coupled coils for wireless electricity

A basic analysis of inductive coils and its parameter calculations are presented. The simulations of mutual inductance, coupling factor calculations are demonstrated with graphical analysis. Three different lab-scale coil models such as square, circular and rectangular coils are wounded to evaluat...

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Main Authors: Nataraj, Chandrasekharan, Khan, Sheroz, Habaebi, Mohamed Hadi, Muthalif, Asan G. A.
Format: Article
Language:English
English
Published: Asian Research Publishing Network (ARPN) 2017
Subjects:
Online Access:http://irep.iium.edu.my/57920/
http://irep.iium.edu.my/57920/
http://irep.iium.edu.my/57920/1/jeas_0717_6161.pdf
http://irep.iium.edu.my/57920/7/57920-Analysis%20of%20mutual%20inductance%20and%20coupling%20factor%20of%20inductively%20coupled_SCOPUS.pdf
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recordtype eprints
spelling iium-579202018-04-02T08:38:10Z http://irep.iium.edu.my/57920/ Analysis of mutual inductance and coupling factor of inductively coupled coils for wireless electricity Nataraj, Chandrasekharan Khan, Sheroz Habaebi, Mohamed Hadi Muthalif, Asan G. A. TK7800 Electronics. Computer engineering. Computer hardware. Photoelectronic devices A basic analysis of inductive coils and its parameter calculations are presented. The simulations of mutual inductance, coupling factor calculations are demonstrated with graphical analysis. Three different lab-scale coil models such as square, circular and rectangular coils are wounded to evaluate the magnetic field by experiment, to validate the performance of Wireless Power System (WPT). In the open literature, circular coils are employed in most of the works, but few works have been reported in the parameter analysis. Further investigations on parameter exploration seems as a prerequisite for magnetic field measurement by estimating the parameters such as mutual inductance(M), coupling factor(k), magnetic flux(Φ) and magnetic field(B). It helps us to select the coils according to the applications. In this work, it is observed that circular performs well than other shaped coils in terms of parametrical analysis which are mentioned above. The simulation, and experimental results are tabulated as well as supported graphical plots are shown as proving circular coils performs well in the WPT scenario. Keywords: coupling factor, mutual inductance, magnetic field, inductive coils, wireless power transfer. Asian Research Publishing Network (ARPN) 2017-07-10 Article PeerReviewed application/pdf en http://irep.iium.edu.my/57920/1/jeas_0717_6161.pdf application/pdf en http://irep.iium.edu.my/57920/7/57920-Analysis%20of%20mutual%20inductance%20and%20coupling%20factor%20of%20inductively%20coupled_SCOPUS.pdf Nataraj, Chandrasekharan and Khan, Sheroz and Habaebi, Mohamed Hadi and Muthalif, Asan G. A. (2017) Analysis of mutual inductance and coupling factor of inductively coupled coils for wireless electricity. ARPN Journal of Engineering and Applied Sciences, 12 (13). pp. 4007-4012. ISSN 1819-6608 http://www.arpnjournals.org/jeas/research_papers/rp_2017/jeas_0717_6161.pdf
repository_type Digital Repository
institution_category Local University
institution International Islamic University Malaysia
building IIUM Repository
collection Online Access
language English
English
topic TK7800 Electronics. Computer engineering. Computer hardware. Photoelectronic devices
spellingShingle TK7800 Electronics. Computer engineering. Computer hardware. Photoelectronic devices
Nataraj, Chandrasekharan
Khan, Sheroz
Habaebi, Mohamed Hadi
Muthalif, Asan G. A.
Analysis of mutual inductance and coupling factor of inductively coupled coils for wireless electricity
description A basic analysis of inductive coils and its parameter calculations are presented. The simulations of mutual inductance, coupling factor calculations are demonstrated with graphical analysis. Three different lab-scale coil models such as square, circular and rectangular coils are wounded to evaluate the magnetic field by experiment, to validate the performance of Wireless Power System (WPT). In the open literature, circular coils are employed in most of the works, but few works have been reported in the parameter analysis. Further investigations on parameter exploration seems as a prerequisite for magnetic field measurement by estimating the parameters such as mutual inductance(M), coupling factor(k), magnetic flux(Φ) and magnetic field(B). It helps us to select the coils according to the applications. In this work, it is observed that circular performs well than other shaped coils in terms of parametrical analysis which are mentioned above. The simulation, and experimental results are tabulated as well as supported graphical plots are shown as proving circular coils performs well in the WPT scenario. Keywords: coupling factor, mutual inductance, magnetic field, inductive coils, wireless power transfer.
format Article
author Nataraj, Chandrasekharan
Khan, Sheroz
Habaebi, Mohamed Hadi
Muthalif, Asan G. A.
author_facet Nataraj, Chandrasekharan
Khan, Sheroz
Habaebi, Mohamed Hadi
Muthalif, Asan G. A.
author_sort Nataraj, Chandrasekharan
title Analysis of mutual inductance and coupling factor of inductively coupled coils for wireless electricity
title_short Analysis of mutual inductance and coupling factor of inductively coupled coils for wireless electricity
title_full Analysis of mutual inductance and coupling factor of inductively coupled coils for wireless electricity
title_fullStr Analysis of mutual inductance and coupling factor of inductively coupled coils for wireless electricity
title_full_unstemmed Analysis of mutual inductance and coupling factor of inductively coupled coils for wireless electricity
title_sort analysis of mutual inductance and coupling factor of inductively coupled coils for wireless electricity
publisher Asian Research Publishing Network (ARPN)
publishDate 2017
url http://irep.iium.edu.my/57920/
http://irep.iium.edu.my/57920/
http://irep.iium.edu.my/57920/1/jeas_0717_6161.pdf
http://irep.iium.edu.my/57920/7/57920-Analysis%20of%20mutual%20inductance%20and%20coupling%20factor%20of%20inductively%20coupled_SCOPUS.pdf
first_indexed 2023-09-18T21:21:53Z
last_indexed 2023-09-18T21:21:53Z
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