High-Power Bidirectional DC/DC Converter with Natural Commutation
碩士 === 國立臺灣科技大學 === 電子工程系 === 103 === This thesis proposes a high-power bidirectional DC/DC converter for micro-grid system applications. The power-stage circuit topology is a non-isolated buck-boost DC/DC converter. Conventionally, this topology is hard-switched, which results in significant switch...
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ndltd-TW-103NTUS54280642016-11-06T04:19:39Z http://ndltd.ncl.edu.tw/handle/84354102352686414747 High-Power Bidirectional DC/DC Converter with Natural Commutation 具自然換向高功率雙向轉換器 Chi-Rong Chen 陳麒容 碩士 國立臺灣科技大學 電子工程系 103 This thesis proposes a high-power bidirectional DC/DC converter for micro-grid system applications. The power-stage circuit topology is a non-isolated buck-boost DC/DC converter. Conventionally, this topology is hard-switched, which results in significant switching losses, as well as induces electromagnetic interferences and high-frequency noises. Contrarily, a novel control strategy is proposed in this thesis, in which zero-voltage-switching (ZVS) of power switches can be realized with simple pulse-width-modulation. The term “natural commutation” here means that inductor current keeps flowing reversely through the switched-on path. This reversed current will accordingly release the energy stored in the parasitic capacitance of the power switches, which significantly reduces the switching loss. Specifically, even at light-load condition, the conversion efficiency can be improved easily by this control strategy and achieves high efficiency under wide-range load variations. The circuit topology and the operation principles are analyzed in detail in this thesis. According to the design rules, a 2 kW bi-directional converter is built to test its feasibility. The power efficiency is higher than 96 % . Huang-Jen Chiu Yao-Ching Hsieh 邱煌仁 謝耀慶 2015 學位論文 ; thesis 103 zh-TW |
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碩士 === 國立臺灣科技大學 === 電子工程系 === 103 === This thesis proposes a high-power bidirectional DC/DC converter for micro-grid system applications. The power-stage circuit topology is a non-isolated buck-boost DC/DC converter. Conventionally, this topology is hard-switched, which results in significant switching losses, as well as induces electromagnetic interferences and high-frequency noises. Contrarily, a novel control strategy is proposed in this thesis, in which zero-voltage-switching (ZVS) of power switches can be realized with simple pulse-width-modulation. The term “natural commutation” here means that inductor current keeps flowing reversely through the switched-on path. This reversed current will accordingly release the energy stored in the parasitic capacitance of the power switches, which significantly reduces the switching loss. Specifically, even at light-load condition, the conversion efficiency can be improved easily by this control strategy and achieves high efficiency under wide-range load variations. The circuit topology and the operation principles are analyzed in detail in this thesis. According to the design rules, a 2 kW bi-directional converter is built to test its feasibility. The power efficiency is higher than 96 % .
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Huang-Jen Chiu |
author_facet |
Huang-Jen Chiu Chi-Rong Chen 陳麒容 |
author |
Chi-Rong Chen 陳麒容 |
spellingShingle |
Chi-Rong Chen 陳麒容 High-Power Bidirectional DC/DC Converter with Natural Commutation |
author_sort |
Chi-Rong Chen |
title |
High-Power Bidirectional DC/DC Converter with Natural Commutation |
title_short |
High-Power Bidirectional DC/DC Converter with Natural Commutation |
title_full |
High-Power Bidirectional DC/DC Converter with Natural Commutation |
title_fullStr |
High-Power Bidirectional DC/DC Converter with Natural Commutation |
title_full_unstemmed |
High-Power Bidirectional DC/DC Converter with Natural Commutation |
title_sort |
high-power bidirectional dc/dc converter with natural commutation |
publishDate |
2015 |
url |
http://ndltd.ncl.edu.tw/handle/84354102352686414747 |
work_keys_str_mv |
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