A novel three phase cascaded multilevel inverter topology

A new Cascaded Multilevel inverter (CMLI) concept is presented in this paper, which is applicable to any existing CMLI topologies. The proposed new three phase MLI topology consists of level generator stage (LGS) and phase generator stage (PGS). While the PGS contains a specific structure of 12-semi...

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Main Authors: Hasan, M., Abu-Siada, Ahmed
Format: Conference Paper
Published: 2017
Online Access:http://hdl.handle.net/20.500.11937/59400
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author Hasan, M.
Abu-Siada, Ahmed
author_facet Hasan, M.
Abu-Siada, Ahmed
author_sort Hasan, M.
building Curtin Institutional Repository
collection Online Access
description A new Cascaded Multilevel inverter (CMLI) concept is presented in this paper, which is applicable to any existing CMLI topologies. The proposed new three phase MLI topology consists of level generator stage (LGS) and phase generator stage (PGS). While the PGS contains a specific structure of 12-semiconductor switches and 12-diodes, the LGS structure depends on the existing CMLI topologies. The main feature of the proposed new CMLI topology is to reduce the device counts of the existing CMLI topologies while they are implemented as dc/ac three phase power converters. The conventional cross-switched CMLI topology is considered as LGS in the experimental prototype. Simulation and experimental results are provided to verify the proposed new three phase CMLI concept.
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format Conference Paper
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T10:16:17Z
publishDate 2017
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spelling curtin-20.500.11937-594002018-03-16T00:03:50Z A novel three phase cascaded multilevel inverter topology Hasan, M. Abu-Siada, Ahmed A new Cascaded Multilevel inverter (CMLI) concept is presented in this paper, which is applicable to any existing CMLI topologies. The proposed new three phase MLI topology consists of level generator stage (LGS) and phase generator stage (PGS). While the PGS contains a specific structure of 12-semiconductor switches and 12-diodes, the LGS structure depends on the existing CMLI topologies. The main feature of the proposed new CMLI topology is to reduce the device counts of the existing CMLI topologies while they are implemented as dc/ac three phase power converters. The conventional cross-switched CMLI topology is considered as LGS in the experimental prototype. Simulation and experimental results are provided to verify the proposed new three phase CMLI concept. 2017 Conference Paper http://hdl.handle.net/20.500.11937/59400 10.1109/IEACON.2016.8067351 fulltext
spellingShingle Hasan, M.
Abu-Siada, Ahmed
A novel three phase cascaded multilevel inverter topology
title A novel three phase cascaded multilevel inverter topology
title_full A novel three phase cascaded multilevel inverter topology
title_fullStr A novel three phase cascaded multilevel inverter topology
title_full_unstemmed A novel three phase cascaded multilevel inverter topology
title_short A novel three phase cascaded multilevel inverter topology
title_sort novel three phase cascaded multilevel inverter topology
url http://hdl.handle.net/20.500.11937/59400