Series-Series/Series Compensated Inductive Power Transmission System with Symmetrical Half-Bridge Resonant Converter: Design, Analysis, and Experimental Assessment

In order to compensate the large leakage inductance and improve the power transmission capacity, capacitors are widely used in inductive power transfer (IPT) systems, which results in high voltage or current stresses in the resonant tanks and limits higher volt-ampere (VA) rating of the transfer pow...

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Main Authors: Jianfeng Hong, Mingjie Guan, Zaifa Lin, Qiu Fang, Wei Wu, Wenxiang Chen
Format: Article
Language:English
Published: MDPI AG 2019-06-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/12/12/2268
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spelling doaj-aa4e467440914a6ea8cd87b0a3061b302020-11-25T01:09:00ZengMDPI AGEnergies1996-10732019-06-011212226810.3390/en12122268en12122268Series-Series/Series Compensated Inductive Power Transmission System with Symmetrical Half-Bridge Resonant Converter: Design, Analysis, and Experimental AssessmentJianfeng Hong0Mingjie Guan1Zaifa Lin2Qiu Fang3Wei Wu4Wenxiang Chen5Department of Instrumental and Electrical Engineering, Xiamen University, Xiamen 361005, ChinaDepartment of Instrumental and Electrical Engineering, Xiamen University, Xiamen 361005, ChinaDepartment of Instrumental and Electrical Engineering, Xiamen University, Xiamen 361005, ChinaFujian Collaborative Innovation Center for R&D of Coach and Special Vehicle, Xiamen 361024, ChinaDepartment of Instrumental and Electrical Engineering, Xiamen University, Xiamen 361005, ChinaDepartment of Instrumental and Electrical Engineering, Xiamen University, Xiamen 361005, ChinaIn order to compensate the large leakage inductance and improve the power transmission capacity, capacitors are widely used in inductive power transfer (IPT) systems, which results in high voltage or current stresses in the resonant tanks and limits higher volt-ampere (VA) rating of the transfer power, especially in medium and low frequency applications. This paper presents a symmetrical half-bridge resonant converter (SHRC) for series-series/series compensated IPT systems with detailed analysis and design. It operates at a relatively low frequency of 12.5 kHz, suitable for IGBT applications. The theoretical analysis shows that, compared with full-bridge resonant converter (FRC) for IPT, the symmetrical half-bridge resonant converter achieves a higher efficiency. Simulation and a prototype of 1500 W power output were built to verify the theoretical analysis. The experimental results show that the power loss of SHRC is 39.7 W while that of FRC is 79.4 W, which is consistent with the theoretical analysis. The global efficiency of the IPT based on the proposed converter is 91.6%.https://www.mdpi.com/1996-1073/12/12/2268efficiency enhancementinductive power transfersymmetrical half-bridge resonant converter
collection DOAJ
language English
format Article
sources DOAJ
author Jianfeng Hong
Mingjie Guan
Zaifa Lin
Qiu Fang
Wei Wu
Wenxiang Chen
spellingShingle Jianfeng Hong
Mingjie Guan
Zaifa Lin
Qiu Fang
Wei Wu
Wenxiang Chen
Series-Series/Series Compensated Inductive Power Transmission System with Symmetrical Half-Bridge Resonant Converter: Design, Analysis, and Experimental Assessment
Energies
efficiency enhancement
inductive power transfer
symmetrical half-bridge resonant converter
author_facet Jianfeng Hong
Mingjie Guan
Zaifa Lin
Qiu Fang
Wei Wu
Wenxiang Chen
author_sort Jianfeng Hong
title Series-Series/Series Compensated Inductive Power Transmission System with Symmetrical Half-Bridge Resonant Converter: Design, Analysis, and Experimental Assessment
title_short Series-Series/Series Compensated Inductive Power Transmission System with Symmetrical Half-Bridge Resonant Converter: Design, Analysis, and Experimental Assessment
title_full Series-Series/Series Compensated Inductive Power Transmission System with Symmetrical Half-Bridge Resonant Converter: Design, Analysis, and Experimental Assessment
title_fullStr Series-Series/Series Compensated Inductive Power Transmission System with Symmetrical Half-Bridge Resonant Converter: Design, Analysis, and Experimental Assessment
title_full_unstemmed Series-Series/Series Compensated Inductive Power Transmission System with Symmetrical Half-Bridge Resonant Converter: Design, Analysis, and Experimental Assessment
title_sort series-series/series compensated inductive power transmission system with symmetrical half-bridge resonant converter: design, analysis, and experimental assessment
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2019-06-01
description In order to compensate the large leakage inductance and improve the power transmission capacity, capacitors are widely used in inductive power transfer (IPT) systems, which results in high voltage or current stresses in the resonant tanks and limits higher volt-ampere (VA) rating of the transfer power, especially in medium and low frequency applications. This paper presents a symmetrical half-bridge resonant converter (SHRC) for series-series/series compensated IPT systems with detailed analysis and design. It operates at a relatively low frequency of 12.5 kHz, suitable for IGBT applications. The theoretical analysis shows that, compared with full-bridge resonant converter (FRC) for IPT, the symmetrical half-bridge resonant converter achieves a higher efficiency. Simulation and a prototype of 1500 W power output were built to verify the theoretical analysis. The experimental results show that the power loss of SHRC is 39.7 W while that of FRC is 79.4 W, which is consistent with the theoretical analysis. The global efficiency of the IPT based on the proposed converter is 91.6%.
topic efficiency enhancement
inductive power transfer
symmetrical half-bridge resonant converter
url https://www.mdpi.com/1996-1073/12/12/2268
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