Dynamic analysis of the high-power factor three-phase AC to DC converter using current injection hybrid resonant technique
This paper presents the dynamic analysis of the high-power factor three-phase ac to dc converter using current injection hybrid resonant technique in order to investigate the characteristics of the output voltage, line current, DC-link voltage and the resonant current of the proposed converter. The...
Published in: | International Journal of Power Electronics and Drive Systems |
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Institute of Advanced Engineering and Science
2019
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2-s2.0-85059609445 Baharom R.; Seroji M.N. Dynamic analysis of the high-power factor three-phase AC to DC converter using current injection hybrid resonant technique 2019 International Journal of Power Electronics and Drive Systems 10 1 10.11591/ijpeds.v10.i1.pp538-547 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85059609445&doi=10.11591%2fijpeds.v10.i1.pp538-547&partnerID=40&md5=8301fd87085eddab325b3a1f65e7fcaa This paper presents the dynamic analysis of the high-power factor three-phase ac to dc converter using current injection hybrid resonant technique in order to investigate the characteristics of the output voltage, line current, DC-link voltage and the resonant current of the proposed converter. The dynamic analysis has been developed based on a separate analysis of the rectifier line-frequency operation and at the resonant circuit high-frequency. Converter circuit analysis has been performed based on the operation at the fundamental frequency. The power balance relation method has been included in order to match the line frequency equation with the high frequency resonant stage equation. This analysis can be envisaged to be the heart of the small-signal model to design the output voltage regulation and maintain a high-power factor input line current of the proposed converter. © 2019 Institute of Advanced Engineering and Science. All rights reserved. Institute of Advanced Engineering and Science 20888694 English Article All Open Access; Gold Open Access; Green Open Access |
author |
Baharom R.; Seroji M.N. |
spellingShingle |
Baharom R.; Seroji M.N. Dynamic analysis of the high-power factor three-phase AC to DC converter using current injection hybrid resonant technique |
author_facet |
Baharom R.; Seroji M.N. |
author_sort |
Baharom R.; Seroji M.N. |
title |
Dynamic analysis of the high-power factor three-phase AC to DC converter using current injection hybrid resonant technique |
title_short |
Dynamic analysis of the high-power factor three-phase AC to DC converter using current injection hybrid resonant technique |
title_full |
Dynamic analysis of the high-power factor three-phase AC to DC converter using current injection hybrid resonant technique |
title_fullStr |
Dynamic analysis of the high-power factor three-phase AC to DC converter using current injection hybrid resonant technique |
title_full_unstemmed |
Dynamic analysis of the high-power factor three-phase AC to DC converter using current injection hybrid resonant technique |
title_sort |
Dynamic analysis of the high-power factor three-phase AC to DC converter using current injection hybrid resonant technique |
publishDate |
2019 |
container_title |
International Journal of Power Electronics and Drive Systems |
container_volume |
10 |
container_issue |
1 |
doi_str_mv |
10.11591/ijpeds.v10.i1.pp538-547 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85059609445&doi=10.11591%2fijpeds.v10.i1.pp538-547&partnerID=40&md5=8301fd87085eddab325b3a1f65e7fcaa |
description |
This paper presents the dynamic analysis of the high-power factor three-phase ac to dc converter using current injection hybrid resonant technique in order to investigate the characteristics of the output voltage, line current, DC-link voltage and the resonant current of the proposed converter. The dynamic analysis has been developed based on a separate analysis of the rectifier line-frequency operation and at the resonant circuit high-frequency. Converter circuit analysis has been performed based on the operation at the fundamental frequency. The power balance relation method has been included in order to match the line frequency equation with the high frequency resonant stage equation. This analysis can be envisaged to be the heart of the small-signal model to design the output voltage regulation and maintain a high-power factor input line current of the proposed converter. © 2019 Institute of Advanced Engineering and Science. All rights reserved. |
publisher |
Institute of Advanced Engineering and Science |
issn |
20888694 |
language |
English |
format |
Article |
accesstype |
All Open Access; Gold Open Access; Green Open Access |
record_format |
scopus |
collection |
Scopus |
_version_ |
1809677601297399808 |