A Three-Phase Six-Switch Rectifier with Zero-Voltage-Switching and Zero-Current-Switching Features

碩士 === 中原大學 === 電機工程研究所 === 98 === Since the requirements for both regulation and standard on power quality and current harmonics are more strict in recent years, many switch mode rectifier techniques are widely adopted. There are many different kinds of basic types for switch mode rectifier. Three-...

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Main Authors: CHANG-YI PENG, 彭常益
Other Authors: Jin-Maun Ho
Format: Others
Language:zh-TW
Published: 2010
Online Access:http://ndltd.ncl.edu.tw/handle/68662627484730364292
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spelling ndltd-TW-098CYCU54420182015-10-13T18:44:54Z http://ndltd.ncl.edu.tw/handle/68662627484730364292 A Three-Phase Six-Switch Rectifier with Zero-Voltage-Switching and Zero-Current-Switching Features 具零電壓零電流柔切特性之三相六開關整流器 CHANG-YI PENG 彭常益 碩士 中原大學 電機工程研究所 98 Since the requirements for both regulation and standard on power quality and current harmonics are more strict in recent years, many switch mode rectifier techniques are widely adopted. There are many different kinds of basic types for switch mode rectifier. Three-phase six-switch topology in three-phase supply power system is often used in the equipment of the communication industry due to the facts that it has better power quality, lower current harmonics, and higher reliability; also, it is suitable for need in high power application. Adopting hard switching in switch mode power supply technology would cause low efficiency and high electromagnetic interference. In this thesis, there is an analysis and design for a soft-switching scheme that contains zero voltage switching and zero current switching. This analysis and the design combined with a three-phase six-switch topology rectifier creates a new three-phase soft-switching rectifier which would have characteristics of stable output voltage, high efficient, high power density, high power factor, and low electromagnetic interference. Jin-Maun Ho 何金滿 2010 學位論文 ; thesis 124 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 中原大學 === 電機工程研究所 === 98 === Since the requirements for both regulation and standard on power quality and current harmonics are more strict in recent years, many switch mode rectifier techniques are widely adopted. There are many different kinds of basic types for switch mode rectifier. Three-phase six-switch topology in three-phase supply power system is often used in the equipment of the communication industry due to the facts that it has better power quality, lower current harmonics, and higher reliability; also, it is suitable for need in high power application. Adopting hard switching in switch mode power supply technology would cause low efficiency and high electromagnetic interference. In this thesis, there is an analysis and design for a soft-switching scheme that contains zero voltage switching and zero current switching. This analysis and the design combined with a three-phase six-switch topology rectifier creates a new three-phase soft-switching rectifier which would have characteristics of stable output voltage, high efficient, high power density, high power factor, and low electromagnetic interference.
author2 Jin-Maun Ho
author_facet Jin-Maun Ho
CHANG-YI PENG
彭常益
author CHANG-YI PENG
彭常益
spellingShingle CHANG-YI PENG
彭常益
A Three-Phase Six-Switch Rectifier with Zero-Voltage-Switching and Zero-Current-Switching Features
author_sort CHANG-YI PENG
title A Three-Phase Six-Switch Rectifier with Zero-Voltage-Switching and Zero-Current-Switching Features
title_short A Three-Phase Six-Switch Rectifier with Zero-Voltage-Switching and Zero-Current-Switching Features
title_full A Three-Phase Six-Switch Rectifier with Zero-Voltage-Switching and Zero-Current-Switching Features
title_fullStr A Three-Phase Six-Switch Rectifier with Zero-Voltage-Switching and Zero-Current-Switching Features
title_full_unstemmed A Three-Phase Six-Switch Rectifier with Zero-Voltage-Switching and Zero-Current-Switching Features
title_sort three-phase six-switch rectifier with zero-voltage-switching and zero-current-switching features
publishDate 2010
url http://ndltd.ncl.edu.tw/handle/68662627484730364292
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