A novel soft-switched single-phase grid-connected current-source inverter

This paper represents a novel soft-switched grid-connected current-source inverter topology and an efficient control strategy using switching flow graph theory. The switching flow graph technique is a unique diagrammatic model and a convenient strategy for analyzing PWM switching converters. All pow...

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Main Authors: M. Pakdel, S. Jalilzadeh
Format: Article
Language:English
Published: Taylor & Francis Group 2017-01-01
Series:Cogent Engineering
Subjects:
Online Access:http://dx.doi.org/10.1080/23311916.2017.1357866
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author M. Pakdel
S. Jalilzadeh
author_facet M. Pakdel
S. Jalilzadeh
author_sort M. Pakdel
collection DOAJ
description This paper represents a novel soft-switched grid-connected current-source inverter topology and an efficient control strategy using switching flow graph theory. The switching flow graph technique is a unique diagrammatic model and a convenient strategy for analyzing PWM switching converters. All power switches operate at zero-current-switching (ZCS) turn-off and zero-voltage-switching (ZVS) turn-on. As a result, commutation and switching power losses will be declined; furthermore, higher efficiency is achieved. The proposed topology and control strategy for soft-switched grid-connected inverter is analyzed theoretically and demonstrated experimentally.
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spelling doaj.art-d5657ba2f18d48cbb77046b8eb5d79042023-09-02T10:53:38ZengTaylor & Francis GroupCogent Engineering2331-19162017-01-014110.1080/23311916.2017.13578661357866A novel soft-switched single-phase grid-connected current-source inverterM. Pakdel0S. Jalilzadeh1University of ZanjanUniversity of ZanjanThis paper represents a novel soft-switched grid-connected current-source inverter topology and an efficient control strategy using switching flow graph theory. The switching flow graph technique is a unique diagrammatic model and a convenient strategy for analyzing PWM switching converters. All power switches operate at zero-current-switching (ZCS) turn-off and zero-voltage-switching (ZVS) turn-on. As a result, commutation and switching power losses will be declined; furthermore, higher efficiency is achieved. The proposed topology and control strategy for soft-switched grid-connected inverter is analyzed theoretically and demonstrated experimentally.http://dx.doi.org/10.1080/23311916.2017.1357866dc-ac power converterscurrent-source invertersoft-switchinggrid-conneced invertersswitching flow graph theory
spellingShingle M. Pakdel
S. Jalilzadeh
A novel soft-switched single-phase grid-connected current-source inverter
Cogent Engineering
dc-ac power converters
current-source inverter
soft-switching
grid-conneced inverters
switching flow graph theory
title A novel soft-switched single-phase grid-connected current-source inverter
title_full A novel soft-switched single-phase grid-connected current-source inverter
title_fullStr A novel soft-switched single-phase grid-connected current-source inverter
title_full_unstemmed A novel soft-switched single-phase grid-connected current-source inverter
title_short A novel soft-switched single-phase grid-connected current-source inverter
title_sort novel soft switched single phase grid connected current source inverter
topic dc-ac power converters
current-source inverter
soft-switching
grid-conneced inverters
switching flow graph theory
url http://dx.doi.org/10.1080/23311916.2017.1357866
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