Selective Omnidirectional Magnetic Resonant Coupling Wireless Power Transfer With Multiple-Receiver System

Magnetic resonant coupling (MRC) wireless power transfer (WPT) technology provides a novel solution to the tricky power-charging issue of densely connected sensor devices in the age of Internet of Things. Due to the cost and space constraints, the one-to-one MRC WPT is not suitable for charging the...

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Main Authors: Zhongyu Dai, Zhijian Fang, Hong Huang, Yuanjian He, Junhua Wang
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8302901/
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spelling doaj-a064177b0e024fc6b2129bd74e2b1a202021-03-29T21:01:10ZengIEEEIEEE Access2169-35362018-01-016192871929410.1109/ACCESS.2018.28097978302901Selective Omnidirectional Magnetic Resonant Coupling Wireless Power Transfer With Multiple-Receiver SystemZhongyu Dai0https://orcid.org/0000-0002-4574-405XZhijian Fang1https://orcid.org/0000-0001-8044-3001Hong Huang2Yuanjian He3Junhua Wang4https://orcid.org/0000-0001-6032-3352School of Electrical Engineering, Wuhan University, Wuhan, ChinaSchool of Electrical Engineering, Wuhan University, Wuhan, ChinaSchool of Electrical Engineering, Wuhan University, Wuhan, ChinaSchool of Electrical Engineering, Wuhan University, Wuhan, ChinaSchool of Electrical Engineering, Wuhan University, Wuhan, ChinaMagnetic resonant coupling (MRC) wireless power transfer (WPT) technology provides a novel solution to the tricky power-charging issue of densely connected sensor devices in the age of Internet of Things. Due to the cost and space constraints, the one-to-one MRC WPT is not suitable for charging the large number of sensor devices. The one-to-many MRC WPT requires less cost and space, but all receivers receive the power emitted from the transmitter disregarding the receivers' needs, which will lead to the accelerated aging even damage or malfunction of the receivers. In this paper, we propose a selective omnidirectional MRC WPT with multiple-receiver system. The power transmitted by an omnidirectional transmitter composed of three orthogonal circular coils will be received by any receiver located nearby. As the number of the transmitters reduces, the cost and space declines. Based on the band pass filter principle, the receivers selectively acquire the power at a designated frequency, which improves the energy efficiency and increase equipment service life. Moreover, for the proposed model, its magnetic field distribution of the simulation and physical experiments are carefully designed and performed, and their results are examined and analyzed in detail. They all confirm the capabilities of selective power transferring and the omnidirectional power transfer of the MRC WPT.https://ieeexplore.ieee.org/document/8302901/Magnetic resonant coupling (MRC)omnidirectional power transferselective power transferwireless power transfer (WPT)
collection DOAJ
language English
format Article
sources DOAJ
author Zhongyu Dai
Zhijian Fang
Hong Huang
Yuanjian He
Junhua Wang
spellingShingle Zhongyu Dai
Zhijian Fang
Hong Huang
Yuanjian He
Junhua Wang
Selective Omnidirectional Magnetic Resonant Coupling Wireless Power Transfer With Multiple-Receiver System
IEEE Access
Magnetic resonant coupling (MRC)
omnidirectional power transfer
selective power transfer
wireless power transfer (WPT)
author_facet Zhongyu Dai
Zhijian Fang
Hong Huang
Yuanjian He
Junhua Wang
author_sort Zhongyu Dai
title Selective Omnidirectional Magnetic Resonant Coupling Wireless Power Transfer With Multiple-Receiver System
title_short Selective Omnidirectional Magnetic Resonant Coupling Wireless Power Transfer With Multiple-Receiver System
title_full Selective Omnidirectional Magnetic Resonant Coupling Wireless Power Transfer With Multiple-Receiver System
title_fullStr Selective Omnidirectional Magnetic Resonant Coupling Wireless Power Transfer With Multiple-Receiver System
title_full_unstemmed Selective Omnidirectional Magnetic Resonant Coupling Wireless Power Transfer With Multiple-Receiver System
title_sort selective omnidirectional magnetic resonant coupling wireless power transfer with multiple-receiver system
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2018-01-01
description Magnetic resonant coupling (MRC) wireless power transfer (WPT) technology provides a novel solution to the tricky power-charging issue of densely connected sensor devices in the age of Internet of Things. Due to the cost and space constraints, the one-to-one MRC WPT is not suitable for charging the large number of sensor devices. The one-to-many MRC WPT requires less cost and space, but all receivers receive the power emitted from the transmitter disregarding the receivers' needs, which will lead to the accelerated aging even damage or malfunction of the receivers. In this paper, we propose a selective omnidirectional MRC WPT with multiple-receiver system. The power transmitted by an omnidirectional transmitter composed of three orthogonal circular coils will be received by any receiver located nearby. As the number of the transmitters reduces, the cost and space declines. Based on the band pass filter principle, the receivers selectively acquire the power at a designated frequency, which improves the energy efficiency and increase equipment service life. Moreover, for the proposed model, its magnetic field distribution of the simulation and physical experiments are carefully designed and performed, and their results are examined and analyzed in detail. They all confirm the capabilities of selective power transferring and the omnidirectional power transfer of the MRC WPT.
topic Magnetic resonant coupling (MRC)
omnidirectional power transfer
selective power transfer
wireless power transfer (WPT)
url https://ieeexplore.ieee.org/document/8302901/
work_keys_str_mv AT zhongyudai selectiveomnidirectionalmagneticresonantcouplingwirelesspowertransferwithmultiplereceiversystem
AT zhijianfang selectiveomnidirectionalmagneticresonantcouplingwirelesspowertransferwithmultiplereceiversystem
AT honghuang selectiveomnidirectionalmagneticresonantcouplingwirelesspowertransferwithmultiplereceiversystem
AT yuanjianhe selectiveomnidirectionalmagneticresonantcouplingwirelesspowertransferwithmultiplereceiversystem
AT junhuawang selectiveomnidirectionalmagneticresonantcouplingwirelesspowertransferwithmultiplereceiversystem
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