A Novel DC Bias Suppression Strategy for Single-Phase Full-Bridge DC-DC Arc Welding Converter
The high frequency transformer in single-phase full-bridge DC-DC converter is prone to saturation because of the asymmetry of circuit parameters. Transformer saturation will increase power consumption, accelerate the aging of winding insulation, and even damage power switches. In order to prevent th...
Main Authors: | , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
MDPI AG
2021-02-01
|
Series: | Electronics |
Subjects: | |
Online Access: | https://www.mdpi.com/2079-9292/10/4/428 |
id |
doaj-507e0a335547461c8515af076bd30238 |
---|---|
record_format |
Article |
spelling |
doaj-507e0a335547461c8515af076bd302382021-02-10T00:05:55ZengMDPI AGElectronics2079-92922021-02-011042842810.3390/electronics10040428A Novel DC Bias Suppression Strategy for Single-Phase Full-Bridge DC-DC Arc Welding ConverterYang Zhou0Bojin Qi1Minxin Zheng2Baoqiang Cong3School of Mechanical Engineering and Automation, Beihang University, Beijing 100191, ChinaSchool of Mechanical Engineering and Automation, Beihang University, Beijing 100191, ChinaSchool of Mechanical Engineering and Automation, Beihang University, Beijing 100191, ChinaSchool of Mechanical Engineering and Automation, Beihang University, Beijing 100191, ChinaThe high frequency transformer in single-phase full-bridge DC-DC converter is prone to saturation because of the asymmetry of circuit parameters. Transformer saturation will increase power consumption, accelerate the aging of winding insulation, and even damage power switches. In order to prevent this risk, a DC bias suppression strategy is presented in this article, and the main advantage of this strategy is that the problem of transformer saturation can be completely eliminated. In this article, firstly, the DC bias and saturation mechanism of single-phase full-bridge DC-DC converter are analyzed in detail, and the Maximum Integral Value of Volt-Second Product error (MIVVSPE) is derived. Secondly, aiming at the saturation problem of single-phase full bridge DC-DC converter, a new digital integral circuit is designed to evaluate the DC bias state of transformer, and a DC bias suppression strategy is constructed to suppress the saturation of transformer. Furthermore, different from the traditional current feedback control strategy, the DC bias suppression strategy based on volt-second product error integral can be triggered before the transformer enters the saturation state, and the transformer saturation can be completely suppressed. Finally, a 30 kW single-phase full-bridge DC-DC converter for arc welding is established in lab. The experimental results show that the new DC bias suppression strategy can effectively prevent the transformer from entering the saturation state and improve the operation stability of single-phase full-bridge DC-DC arc welding inverter.https://www.mdpi.com/2079-9292/10/4/428arc welding inverterdigital integratorDC bias suppression strategyhigh frequency transformersingle-phase full-bridge DC-DC convertersaturation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yang Zhou Bojin Qi Minxin Zheng Baoqiang Cong |
spellingShingle |
Yang Zhou Bojin Qi Minxin Zheng Baoqiang Cong A Novel DC Bias Suppression Strategy for Single-Phase Full-Bridge DC-DC Arc Welding Converter Electronics arc welding inverter digital integrator DC bias suppression strategy high frequency transformer single-phase full-bridge DC-DC converter saturation |
author_facet |
Yang Zhou Bojin Qi Minxin Zheng Baoqiang Cong |
author_sort |
Yang Zhou |
title |
A Novel DC Bias Suppression Strategy for Single-Phase Full-Bridge DC-DC Arc Welding Converter |
title_short |
A Novel DC Bias Suppression Strategy for Single-Phase Full-Bridge DC-DC Arc Welding Converter |
title_full |
A Novel DC Bias Suppression Strategy for Single-Phase Full-Bridge DC-DC Arc Welding Converter |
title_fullStr |
A Novel DC Bias Suppression Strategy for Single-Phase Full-Bridge DC-DC Arc Welding Converter |
title_full_unstemmed |
A Novel DC Bias Suppression Strategy for Single-Phase Full-Bridge DC-DC Arc Welding Converter |
title_sort |
novel dc bias suppression strategy for single-phase full-bridge dc-dc arc welding converter |
publisher |
MDPI AG |
series |
Electronics |
issn |
2079-9292 |
publishDate |
2021-02-01 |
description |
The high frequency transformer in single-phase full-bridge DC-DC converter is prone to saturation because of the asymmetry of circuit parameters. Transformer saturation will increase power consumption, accelerate the aging of winding insulation, and even damage power switches. In order to prevent this risk, a DC bias suppression strategy is presented in this article, and the main advantage of this strategy is that the problem of transformer saturation can be completely eliminated. In this article, firstly, the DC bias and saturation mechanism of single-phase full-bridge DC-DC converter are analyzed in detail, and the Maximum Integral Value of Volt-Second Product error (MIVVSPE) is derived. Secondly, aiming at the saturation problem of single-phase full bridge DC-DC converter, a new digital integral circuit is designed to evaluate the DC bias state of transformer, and a DC bias suppression strategy is constructed to suppress the saturation of transformer. Furthermore, different from the traditional current feedback control strategy, the DC bias suppression strategy based on volt-second product error integral can be triggered before the transformer enters the saturation state, and the transformer saturation can be completely suppressed. Finally, a 30 kW single-phase full-bridge DC-DC converter for arc welding is established in lab. The experimental results show that the new DC bias suppression strategy can effectively prevent the transformer from entering the saturation state and improve the operation stability of single-phase full-bridge DC-DC arc welding inverter. |
topic |
arc welding inverter digital integrator DC bias suppression strategy high frequency transformer single-phase full-bridge DC-DC converter saturation |
url |
https://www.mdpi.com/2079-9292/10/4/428 |
work_keys_str_mv |
AT yangzhou anoveldcbiassuppressionstrategyforsinglephasefullbridgedcdcarcweldingconverter AT bojinqi anoveldcbiassuppressionstrategyforsinglephasefullbridgedcdcarcweldingconverter AT minxinzheng anoveldcbiassuppressionstrategyforsinglephasefullbridgedcdcarcweldingconverter AT baoqiangcong anoveldcbiassuppressionstrategyforsinglephasefullbridgedcdcarcweldingconverter AT yangzhou noveldcbiassuppressionstrategyforsinglephasefullbridgedcdcarcweldingconverter AT bojinqi noveldcbiassuppressionstrategyforsinglephasefullbridgedcdcarcweldingconverter AT minxinzheng noveldcbiassuppressionstrategyforsinglephasefullbridgedcdcarcweldingconverter AT baoqiangcong noveldcbiassuppressionstrategyforsinglephasefullbridgedcdcarcweldingconverter |
_version_ |
1724275738967801856 |