Auxiliary Inverter with Zero-current Soft Switching DC/DC Converter Input

An auxiliary inverter with zero-current soft switching DC/DC converter input was proposed. Two-stage transformer circuit structure was adopted, the front part of which was DC/DC converter, and the rear part of which was three-phase inverter circuit. Zero-current switching (ZCS) technology was used f...

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Main Authors: GAO Yongjun, ZHANG Ruifeng
Format: Article
Language:zho
Published: Editorial Department of Electric Drive for Locomotives 2014-01-01
Series:机车电传动
Subjects:
Online Access:http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2014.05.005
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author GAO Yongjun
ZHANG Ruifeng
author_facet GAO Yongjun
ZHANG Ruifeng
author_sort GAO Yongjun
collection DOAJ
description An auxiliary inverter with zero-current soft switching DC/DC converter input was proposed. Two-stage transformer circuit structure was adopted, the front part of which was DC/DC converter, and the rear part of which was three-phase inverter circuit. Zero-current switching (ZCS) technology was used for control, so that switching loss of voltage and current on IGBTs was minimized. The experimental results proved the validity of the design.
format Article
id doaj-art-831ad939f6134c8fbfebedb3c74ca292
institution Kabale University
issn 1000-128X
language zho
publishDate 2014-01-01
publisher Editorial Department of Electric Drive for Locomotives
record_format Article
series 机车电传动
spelling doaj-art-831ad939f6134c8fbfebedb3c74ca2922025-08-20T03:52:51ZzhoEditorial Department of Electric Drive for Locomotives机车电传动1000-128X2014-01-01171920909227Auxiliary Inverter with Zero-current Soft Switching DC/DC Converter InputGAO YongjunZHANG RuifengAn auxiliary inverter with zero-current soft switching DC/DC converter input was proposed. Two-stage transformer circuit structure was adopted, the front part of which was DC/DC converter, and the rear part of which was three-phase inverter circuit. Zero-current switching (ZCS) technology was used for control, so that switching loss of voltage and current on IGBTs was minimized. The experimental results proved the validity of the design.http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2014.05.005soft-switchingDC/DC converterszero-currentauxiliary inverterswitching lossauxiliary power supply
spellingShingle GAO Yongjun
ZHANG Ruifeng
Auxiliary Inverter with Zero-current Soft Switching DC/DC Converter Input
机车电传动
soft-switching
DC/DC converters
zero-current
auxiliary inverter
switching loss
auxiliary power supply
title Auxiliary Inverter with Zero-current Soft Switching DC/DC Converter Input
title_full Auxiliary Inverter with Zero-current Soft Switching DC/DC Converter Input
title_fullStr Auxiliary Inverter with Zero-current Soft Switching DC/DC Converter Input
title_full_unstemmed Auxiliary Inverter with Zero-current Soft Switching DC/DC Converter Input
title_short Auxiliary Inverter with Zero-current Soft Switching DC/DC Converter Input
title_sort auxiliary inverter with zero current soft switching dc dc converter input
topic soft-switching
DC/DC converters
zero-current
auxiliary inverter
switching loss
auxiliary power supply
url http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2014.05.005
work_keys_str_mv AT gaoyongjun auxiliaryinverterwithzerocurrentsoftswitchingdcdcconverterinput
AT zhangruifeng auxiliaryinverterwithzerocurrentsoftswitchingdcdcconverterinput