Experimental validation of new self-voltage balanced 9L-ANPC inverter for photovoltaic applications

Abstract Multilevel inverters play an important role in extracting the power from renewable energy resources and delivering the output voltage with high quality to the load. This paper proposes a new single-stage switched capacitor nine-level inverter, which comprises an improved T-type inverter, au...

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Main Authors: M. Jagabar Sathik, Dhafer J. Almakhles, N. Sandeep, Marif Daula Siddique
Format: Article
Language:English
Published: Nature Publishing Group 2021-03-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-84531-z
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spelling doaj-fb75f09e34f44f0a9b705a86144619be2021-03-11T12:11:05ZengNature Publishing GroupScientific Reports2045-23222021-03-0111111410.1038/s41598-021-84531-zExperimental validation of new self-voltage balanced 9L-ANPC inverter for photovoltaic applicationsM. Jagabar Sathik0Dhafer J. Almakhles1N. Sandeep2Marif Daula Siddique3Renewable Energy Lab, College of Engineering, Prince Sultan UniversityRenewable Energy Lab, College of Engineering, Prince Sultan UniversityMalviya National Institute of Science and TechnologyUniverity of MalayaAbstract Multilevel inverters play an important role in extracting the power from renewable energy resources and delivering the output voltage with high quality to the load. This paper proposes a new single-stage switched capacitor nine-level inverter, which comprises an improved T-type inverter, auxiliary switch, and switched cell unit. The proposed topology effectively reduces the DC-link capacitor voltage and exhibits superior performance over recently switched-capacitor inverter topologies in terms of the number of power components and blocking voltage of the switches. A level-shifted multilevel pulse width modulation scheme with a modified triangular carrier wave is implemented to produce a high-quality stepped output voltage waveform with low switching frequency. The proposed nine-level inverter’s effectiveness, driven by the recommended modulation technique, is experimentally verified under varying load conditions. The power loss and efficiency for the proposed nine-level inverter are thoroughly discussed with different loads.https://doi.org/10.1038/s41598-021-84531-z
collection DOAJ
language English
format Article
sources DOAJ
author M. Jagabar Sathik
Dhafer J. Almakhles
N. Sandeep
Marif Daula Siddique
spellingShingle M. Jagabar Sathik
Dhafer J. Almakhles
N. Sandeep
Marif Daula Siddique
Experimental validation of new self-voltage balanced 9L-ANPC inverter for photovoltaic applications
Scientific Reports
author_facet M. Jagabar Sathik
Dhafer J. Almakhles
N. Sandeep
Marif Daula Siddique
author_sort M. Jagabar Sathik
title Experimental validation of new self-voltage balanced 9L-ANPC inverter for photovoltaic applications
title_short Experimental validation of new self-voltage balanced 9L-ANPC inverter for photovoltaic applications
title_full Experimental validation of new self-voltage balanced 9L-ANPC inverter for photovoltaic applications
title_fullStr Experimental validation of new self-voltage balanced 9L-ANPC inverter for photovoltaic applications
title_full_unstemmed Experimental validation of new self-voltage balanced 9L-ANPC inverter for photovoltaic applications
title_sort experimental validation of new self-voltage balanced 9l-anpc inverter for photovoltaic applications
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-03-01
description Abstract Multilevel inverters play an important role in extracting the power from renewable energy resources and delivering the output voltage with high quality to the load. This paper proposes a new single-stage switched capacitor nine-level inverter, which comprises an improved T-type inverter, auxiliary switch, and switched cell unit. The proposed topology effectively reduces the DC-link capacitor voltage and exhibits superior performance over recently switched-capacitor inverter topologies in terms of the number of power components and blocking voltage of the switches. A level-shifted multilevel pulse width modulation scheme with a modified triangular carrier wave is implemented to produce a high-quality stepped output voltage waveform with low switching frequency. The proposed nine-level inverter’s effectiveness, driven by the recommended modulation technique, is experimentally verified under varying load conditions. The power loss and efficiency for the proposed nine-level inverter are thoroughly discussed with different loads.
url https://doi.org/10.1038/s41598-021-84531-z
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