Design and Implementation of a Bidirectional DC-DC Forward/Flyback Converter with Leakage Energy Recycled

碩士 === 國立成功大學 === 電機工程學系 === 104 === In this thesis, a bidirectional interleaved forward-flyback DC-DC converter with leakage energy recycled is proposed. The proposed converter uses two transformers to reduce the current stress on the power components to reduce the conduction loss and improve the e...

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Main Authors: Yi-JuLu, 呂易儒
Other Authors: Tsorng-Juu Liang
Format: Others
Language:en_US
Published: 2016
Online Access:http://ndltd.ncl.edu.tw/handle/wc36yj
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spelling ndltd-TW-104NCKU54421862019-05-15T22:54:12Z http://ndltd.ncl.edu.tw/handle/wc36yj Design and Implementation of a Bidirectional DC-DC Forward/Flyback Converter with Leakage Energy Recycled 具漏感能量回收之順向返馳式雙向轉換器研製 Yi-JuLu 呂易儒 碩士 國立成功大學 電機工程學系 104 In this thesis, a bidirectional interleaved forward-flyback DC-DC converter with leakage energy recycled is proposed. The proposed converter uses two transformers to reduce the current stress on the power components to reduce the conduction loss and improve the efficiency. When the proposed converter is operated in step-down stage, the topology is the interleaved forward-flyback converter. The voltage stress on power switches is clamped at the input voltage and the leakage energy of the transformer is recycled to the clamping capacitor and input voltage source. When the converter is operated in step-up stage, two flyback converters are operated in parallel and in series in input side and output side, respectively. The voltage stress of power switches is clamped at input voltage and the leakage energy of the transformer is recycled back to input voltage source. Finally, a laboratory prototype circuit with 200 V/24 V and output power 500 W is implemented to verify the feasibility of the proposed converter, the highest efficiency in step-up and step-down are 95.5 % and 92.3 %, respectively. Tsorng-Juu Liang 梁從主 2016 學位論文 ; thesis 73 en_US
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language en_US
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sources NDLTD
description 碩士 === 國立成功大學 === 電機工程學系 === 104 === In this thesis, a bidirectional interleaved forward-flyback DC-DC converter with leakage energy recycled is proposed. The proposed converter uses two transformers to reduce the current stress on the power components to reduce the conduction loss and improve the efficiency. When the proposed converter is operated in step-down stage, the topology is the interleaved forward-flyback converter. The voltage stress on power switches is clamped at the input voltage and the leakage energy of the transformer is recycled to the clamping capacitor and input voltage source. When the converter is operated in step-up stage, two flyback converters are operated in parallel and in series in input side and output side, respectively. The voltage stress of power switches is clamped at input voltage and the leakage energy of the transformer is recycled back to input voltage source. Finally, a laboratory prototype circuit with 200 V/24 V and output power 500 W is implemented to verify the feasibility of the proposed converter, the highest efficiency in step-up and step-down are 95.5 % and 92.3 %, respectively.
author2 Tsorng-Juu Liang
author_facet Tsorng-Juu Liang
Yi-JuLu
呂易儒
author Yi-JuLu
呂易儒
spellingShingle Yi-JuLu
呂易儒
Design and Implementation of a Bidirectional DC-DC Forward/Flyback Converter with Leakage Energy Recycled
author_sort Yi-JuLu
title Design and Implementation of a Bidirectional DC-DC Forward/Flyback Converter with Leakage Energy Recycled
title_short Design and Implementation of a Bidirectional DC-DC Forward/Flyback Converter with Leakage Energy Recycled
title_full Design and Implementation of a Bidirectional DC-DC Forward/Flyback Converter with Leakage Energy Recycled
title_fullStr Design and Implementation of a Bidirectional DC-DC Forward/Flyback Converter with Leakage Energy Recycled
title_full_unstemmed Design and Implementation of a Bidirectional DC-DC Forward/Flyback Converter with Leakage Energy Recycled
title_sort design and implementation of a bidirectional dc-dc forward/flyback converter with leakage energy recycled
publishDate 2016
url http://ndltd.ncl.edu.tw/handle/wc36yj
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