Study and Implementation of Dual-Output Wireless Power Transfer System

碩士 === 國立臺灣科技大學 === 電子工程系 === 107 === This thesis focuses on a wireless charging application with dual outputs and discusses the challenges with complex power generation. The series wireless power transfer (WPT) system architecture is used for analysis, design and implementation. Firstly, a brief in...

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Main Authors: JUI-PO HSU, 徐睿伯
Other Authors: Huang-Jen Chiu
Format: Others
Language:zh-TW
Published: 2019
Online Access:http://ndltd.ncl.edu.tw/handle/qmdgq3
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spelling ndltd-TW-107NTUS54271182019-10-24T05:20:28Z http://ndltd.ncl.edu.tw/handle/qmdgq3 Study and Implementation of Dual-Output Wireless Power Transfer System 雙組輸出無線能量傳輸系統之研製 JUI-PO HSU 徐睿伯 碩士 國立臺灣科技大學 電子工程系 107 This thesis focuses on a wireless charging application with dual outputs and discusses the challenges with complex power generation. The series wireless power transfer (WPT) system architecture is used for analysis, design and implementation. Firstly, a brief introduction of the basic principles of WPT is given and the equivalent circuit models of loosely-coupled coils for WPT application are reviewed. The influence of the interaction coupling between the two two receiver coils on the whole system is analyzed using mathematical theory to calculate the operating frequency point at which the reactive impedance of the transmitter is zero. A design method that can guarantee normal operation of the dual-output WPT system under given coupling coefficient variation range, load range and allowed operating frequency range is proposed in this thesis, and can be used as a basis for experimental research. Finally, the circuit can be implemented and the output of the two sets of receivers can reach 30 W at the same time. The vertical distance between the transmitter coil and receiver coil is 10 mm, and the distance between two receiver coils has three different cases of 0 mm, 20 mm, and 40 mm. Finally, in each test condition, the circuit minimizes the reactiver power. Huang-Jen Chiu 邱煌仁 2019 學位論文 ; thesis 119 zh-TW
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language zh-TW
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description 碩士 === 國立臺灣科技大學 === 電子工程系 === 107 === This thesis focuses on a wireless charging application with dual outputs and discusses the challenges with complex power generation. The series wireless power transfer (WPT) system architecture is used for analysis, design and implementation. Firstly, a brief introduction of the basic principles of WPT is given and the equivalent circuit models of loosely-coupled coils for WPT application are reviewed. The influence of the interaction coupling between the two two receiver coils on the whole system is analyzed using mathematical theory to calculate the operating frequency point at which the reactive impedance of the transmitter is zero. A design method that can guarantee normal operation of the dual-output WPT system under given coupling coefficient variation range, load range and allowed operating frequency range is proposed in this thesis, and can be used as a basis for experimental research. Finally, the circuit can be implemented and the output of the two sets of receivers can reach 30 W at the same time. The vertical distance between the transmitter coil and receiver coil is 10 mm, and the distance between two receiver coils has three different cases of 0 mm, 20 mm, and 40 mm. Finally, in each test condition, the circuit minimizes the reactiver power.
author2 Huang-Jen Chiu
author_facet Huang-Jen Chiu
JUI-PO HSU
徐睿伯
author JUI-PO HSU
徐睿伯
spellingShingle JUI-PO HSU
徐睿伯
Study and Implementation of Dual-Output Wireless Power Transfer System
author_sort JUI-PO HSU
title Study and Implementation of Dual-Output Wireless Power Transfer System
title_short Study and Implementation of Dual-Output Wireless Power Transfer System
title_full Study and Implementation of Dual-Output Wireless Power Transfer System
title_fullStr Study and Implementation of Dual-Output Wireless Power Transfer System
title_full_unstemmed Study and Implementation of Dual-Output Wireless Power Transfer System
title_sort study and implementation of dual-output wireless power transfer system
publishDate 2019
url http://ndltd.ncl.edu.tw/handle/qmdgq3
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