Multi-Level Inverter Capable of Power Factor Control with DC-Link Switches

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1. Verfasser: International Journal for Research In Science & Advanced Technologies
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Veröffentlicht: Zenodo 2026
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author International Journal for Research In Science & Advanced Technologies
author_facet International Journal for Research In Science & Advanced Technologies
contents <p class="MsoNormal"><span>This paper presents a new design and implementation of a three-phase multilevel inverter for distributed power generation system using low frequency modulation and sinusoidal pulse width modulation as well. It is a modular type and it can be extended for extra number of output voltage levels by adding additional modular stages. The impact of the proposed topology is its proficiency to maximize the number of voltage levels using a reduced number of isolated dc voltage sources and electronic switches. Moreover, this paper proposes a significant factor which is developed to define the number of the required components per pole voltage level. A detailed comparison based on is provided in order to categorize the different topologies of the s addressed in the literature. In addition, a prototype has been developed and tested for various modulation indexes to verify the control technique and performance of the topology. Experimental results show a well-matching and good similarity with the simulation results. </span></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19638495
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publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Multi-Level Inverter Capable of Power Factor Control with DC-Link Switches
International Journal for Research In Science & Advanced Technologies
<p class="MsoNormal"><span>This paper presents a new design and implementation of a three-phase multilevel inverter for distributed power generation system using low frequency modulation and sinusoidal pulse width modulation as well. It is a modular type and it can be extended for extra number of output voltage levels by adding additional modular stages. The impact of the proposed topology is its proficiency to maximize the number of voltage levels using a reduced number of isolated dc voltage sources and electronic switches. Moreover, this paper proposes a significant factor which is developed to define the number of the required components per pole voltage level. A detailed comparison based on is provided in order to categorize the different topologies of the s addressed in the literature. In addition, a prototype has been developed and tested for various modulation indexes to verify the control technique and performance of the topology. Experimental results show a well-matching and good similarity with the simulation results. </span></p>
title Multi-Level Inverter Capable of Power Factor Control with DC-Link Switches
url https://doi.org/10.5281/zenodo.19638495