Investigation of low switching frequency control of a three phase cascaded H-bridge multilevel inverter

© 2016 IEEE. This paper presents analysis of a three phase hybrid multilevel inverter (MLI) by applying low frequency stair case control strategy. The proposed MLI contains three cascaded stages, auxiliary stage-1, auxiliary stage-2, and main stage. The main stage contains three half-bridge cells wh...

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Main Authors: Hasan, M., Abu-Siada, Ahmed, Islam, M.
Format: Conference Paper
Published: 2017
Online Access:http://hdl.handle.net/20.500.11937/55203
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author Hasan, M.
Abu-Siada, Ahmed
Islam, M.
author_facet Hasan, M.
Abu-Siada, Ahmed
Islam, M.
author_sort Hasan, M.
building Curtin Institutional Repository
collection Online Access
description © 2016 IEEE. This paper presents analysis of a three phase hybrid multilevel inverter (MLI) by applying low frequency stair case control strategy. The proposed MLI contains three cascaded stages, auxiliary stage-1, auxiliary stage-2, and main stage. The main stage contains three half-bridge cells which are connected in parallel with a common DC power supply. Each of the stages in the auxiliary stages consists of three H-bridge where the H-bridge cells contain isolated DC power supplies. The proposed hybrid MLI is tested for symmetric and asymmetric configurations of input voltage sources of the main and auxiliary stages. A scaled down prototype of the proposed hybrid three-phase hybrid MLI is developed to verify the control concept and the real time performance of the inverter.
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institution Curtin University Malaysia
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spelling curtin-20.500.11937-552032017-09-13T16:10:40Z Investigation of low switching frequency control of a three phase cascaded H-bridge multilevel inverter Hasan, M. Abu-Siada, Ahmed Islam, M. © 2016 IEEE. This paper presents analysis of a three phase hybrid multilevel inverter (MLI) by applying low frequency stair case control strategy. The proposed MLI contains three cascaded stages, auxiliary stage-1, auxiliary stage-2, and main stage. The main stage contains three half-bridge cells which are connected in parallel with a common DC power supply. Each of the stages in the auxiliary stages consists of three H-bridge where the H-bridge cells contain isolated DC power supplies. The proposed hybrid MLI is tested for symmetric and asymmetric configurations of input voltage sources of the main and auxiliary stages. A scaled down prototype of the proposed hybrid three-phase hybrid MLI is developed to verify the control concept and the real time performance of the inverter. 2017 Conference Paper http://hdl.handle.net/20.500.11937/55203 10.1109/ICECTE.2016.7879572 restricted
spellingShingle Hasan, M.
Abu-Siada, Ahmed
Islam, M.
Investigation of low switching frequency control of a three phase cascaded H-bridge multilevel inverter
title Investigation of low switching frequency control of a three phase cascaded H-bridge multilevel inverter
title_full Investigation of low switching frequency control of a three phase cascaded H-bridge multilevel inverter
title_fullStr Investigation of low switching frequency control of a three phase cascaded H-bridge multilevel inverter
title_full_unstemmed Investigation of low switching frequency control of a three phase cascaded H-bridge multilevel inverter
title_short Investigation of low switching frequency control of a three phase cascaded H-bridge multilevel inverter
title_sort investigation of low switching frequency control of a three phase cascaded h-bridge multilevel inverter
url http://hdl.handle.net/20.500.11937/55203