A Double-Boost Converter Based on Coupled Inductance and Magnetic Integration

High-voltage gain converter has a high-frequency use in some industrial fields, for instance, the fuel cell system, the photovoltaic system, electric vehicles, and the high-intensity discharge lamp. In order to solve the problem of the low-voltage gain of traditional boost converter, the double-boos...

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Main Authors: Hongzhu Li, Ling Zhu, Le Wang
Format: Article
Language:English
Published: Wiley 2021-01-01
Series:Active and Passive Electronic Components
Online Access:http://dx.doi.org/10.1155/2021/8014620
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author Hongzhu Li
Ling Zhu
Le Wang
author_facet Hongzhu Li
Ling Zhu
Le Wang
author_sort Hongzhu Li
collection DOAJ
description High-voltage gain converter has a high-frequency use in some industrial fields, for instance, the fuel cell system, the photovoltaic system, electric vehicles, and the high-intensity discharge lamp. In order to solve the problem of the low-voltage gain of traditional boost converter, the double-boost converter with coupled inductance and doubled voltage is proposed, which connects the traditional boost converter in parallel. The voltage gain of the converter is further improved by introducing the voltage-doubled unit of the coupled inductance. Moreover, the clamp capacitor can absorb the leakage inductance in the circuit and reduce the voltage stress of the switch. In addition, two coupled inductors are magnetically collected; then, the loss of the core is analyzed under the same gain. The detailed analysis of the proposed converter and a comparison considering other topologies previously published in the literature are also presented in this article. In order to verify the proposed converter performance, a prototype has been built for a power of 200 W, input and output voltages of 12 and 84 V, respectively, and a switching frequency of 50 kHz. Experimental results validate the effectiveness of the theoretical analysis proving the satisfactory converter performance, whose peak efficiency is 95.5%.
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spelling doaj-art-328db49e74444054b40aec40eff8e0ff2025-02-03T05:58:23ZengWileyActive and Passive Electronic Components1563-50312021-01-01202110.1155/2021/8014620A Double-Boost Converter Based on Coupled Inductance and Magnetic IntegrationHongzhu Li0Ling Zhu1Le Wang2College of Electrical and Control EngineeringCollege of Electrical and Control EngineeringCollege of Electrical and Control EngineeringHigh-voltage gain converter has a high-frequency use in some industrial fields, for instance, the fuel cell system, the photovoltaic system, electric vehicles, and the high-intensity discharge lamp. In order to solve the problem of the low-voltage gain of traditional boost converter, the double-boost converter with coupled inductance and doubled voltage is proposed, which connects the traditional boost converter in parallel. The voltage gain of the converter is further improved by introducing the voltage-doubled unit of the coupled inductance. Moreover, the clamp capacitor can absorb the leakage inductance in the circuit and reduce the voltage stress of the switch. In addition, two coupled inductors are magnetically collected; then, the loss of the core is analyzed under the same gain. The detailed analysis of the proposed converter and a comparison considering other topologies previously published in the literature are also presented in this article. In order to verify the proposed converter performance, a prototype has been built for a power of 200 W, input and output voltages of 12 and 84 V, respectively, and a switching frequency of 50 kHz. Experimental results validate the effectiveness of the theoretical analysis proving the satisfactory converter performance, whose peak efficiency is 95.5%.http://dx.doi.org/10.1155/2021/8014620
spellingShingle Hongzhu Li
Ling Zhu
Le Wang
A Double-Boost Converter Based on Coupled Inductance and Magnetic Integration
Active and Passive Electronic Components
title A Double-Boost Converter Based on Coupled Inductance and Magnetic Integration
title_full A Double-Boost Converter Based on Coupled Inductance and Magnetic Integration
title_fullStr A Double-Boost Converter Based on Coupled Inductance and Magnetic Integration
title_full_unstemmed A Double-Boost Converter Based on Coupled Inductance and Magnetic Integration
title_short A Double-Boost Converter Based on Coupled Inductance and Magnetic Integration
title_sort double boost converter based on coupled inductance and magnetic integration
url http://dx.doi.org/10.1155/2021/8014620
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