Analysis on the DC source lifetime and conduction losses of a single-phase nine-level non-isolated DC Source Symmetric (NDS) multilevel inverter

The Non-isolated DC Source Symmetric (NDS) multilevel inverter in general features reduced number of power devices requirement when compared to conventional multilevel inverter topologies. It has been designed as such the circuit itself can simply be extended if higher output voltage levels is requi...

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Main Authors: Ahmad Azli, Naziha, Mohammadalibeigy, Lily
Format: Conference or Workshop Item
Published: 2023
Subjects:
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author Ahmad Azli, Naziha
Mohammadalibeigy, Lily
author_facet Ahmad Azli, Naziha
Mohammadalibeigy, Lily
author_sort Ahmad Azli, Naziha
collection ePrints
description The Non-isolated DC Source Symmetric (NDS) multilevel inverter in general features reduced number of power devices requirement when compared to conventional multilevel inverter topologies. It has been designed as such the circuit itself can simply be extended if higher output voltage levels is required. This paper presents an analysis on the DC source lifetime and conduction losses of a single-phase nine-level NDS multilevel inverter. From the analysis conducted, the NDS multilevel inverter has been justified to offer advantages in terms less conduction losses which in turn provides better efficiency and equal life time for each DC source.
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spelling utm.eprints-1080052024-10-16T07:47:53Z http://eprints.utm.my/108005/ Analysis on the DC source lifetime and conduction losses of a single-phase nine-level non-isolated DC Source Symmetric (NDS) multilevel inverter Ahmad Azli, Naziha Mohammadalibeigy, Lily TK Electrical engineering. Electronics Nuclear engineering The Non-isolated DC Source Symmetric (NDS) multilevel inverter in general features reduced number of power devices requirement when compared to conventional multilevel inverter topologies. It has been designed as such the circuit itself can simply be extended if higher output voltage levels is required. This paper presents an analysis on the DC source lifetime and conduction losses of a single-phase nine-level NDS multilevel inverter. From the analysis conducted, the NDS multilevel inverter has been justified to offer advantages in terms less conduction losses which in turn provides better efficiency and equal life time for each DC source. 2023 Conference or Workshop Item PeerReviewed Ahmad Azli, Naziha and Mohammadalibeigy, Lily (2023) Analysis on the DC source lifetime and conduction losses of a single-phase nine-level non-isolated DC Source Symmetric (NDS) multilevel inverter. In: 5th International Conference on Electrical, Electronic, Communication and Control Engineering, ICEECC 2021, 15 December 2021-16 December 2021, Johor Bahru, Johor, Malaysia. http://dx.doi.org/10.1063/5.0120961
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Ahmad Azli, Naziha
Mohammadalibeigy, Lily
Analysis on the DC source lifetime and conduction losses of a single-phase nine-level non-isolated DC Source Symmetric (NDS) multilevel inverter
title Analysis on the DC source lifetime and conduction losses of a single-phase nine-level non-isolated DC Source Symmetric (NDS) multilevel inverter
title_full Analysis on the DC source lifetime and conduction losses of a single-phase nine-level non-isolated DC Source Symmetric (NDS) multilevel inverter
title_fullStr Analysis on the DC source lifetime and conduction losses of a single-phase nine-level non-isolated DC Source Symmetric (NDS) multilevel inverter
title_full_unstemmed Analysis on the DC source lifetime and conduction losses of a single-phase nine-level non-isolated DC Source Symmetric (NDS) multilevel inverter
title_short Analysis on the DC source lifetime and conduction losses of a single-phase nine-level non-isolated DC Source Symmetric (NDS) multilevel inverter
title_sort analysis on the dc source lifetime and conduction losses of a single phase nine level non isolated dc source symmetric nds multilevel inverter
topic TK Electrical engineering. Electronics Nuclear engineering
work_keys_str_mv AT ahmadazlinaziha analysisonthedcsourcelifetimeandconductionlossesofasinglephaseninelevelnonisolateddcsourcesymmetricndsmultilevelinverter
AT mohammadalibeigylily analysisonthedcsourcelifetimeandconductionlossesofasinglephaseninelevelnonisolateddcsourcesymmetricndsmultilevelinverter