Multi-output DC-DC converters based on diode-clamped converters configuration: Topology and control strategy

This study presents a new DC–DC multi-output boost (MOB) converter which can share its total outputbetween different series of output voltages for low- and high-power applications. This configuration can be utilised instead of several single output power supplies. This is a compatible topology for a...

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Main Authors: Nami, A., zare, F., Ghosh, Arindam, Blaabjerg, F.
Format: Journal Article
Published: The Institution of Engineering and Technology 2010
Online Access:http://hdl.handle.net/20.500.11937/15111
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author Nami, A.
zare, F.
Ghosh, Arindam
Blaabjerg, F.
author_facet Nami, A.
zare, F.
Ghosh, Arindam
Blaabjerg, F.
author_sort Nami, A.
building Curtin Institutional Repository
collection Online Access
description This study presents a new DC–DC multi-output boost (MOB) converter which can share its total outputbetween different series of output voltages for low- and high-power applications. This configuration can be utilised instead of several single output power supplies. This is a compatible topology for a diode-clamed inverter in the grid connection systems, where boosting low rectified output-voltage and series DC link capacitors is required. To verify the proposed topology, steady-state and dynamic analyses of a MOB converter are examined. A simple control strategy has been proposed to demonstrate the performance of the proposed topology for a double-output boost converter. The topology and its control strategy can easily be extended to offer multiple outputs. Simulation and experimental results are presented to show the validity of the control strategy for the proposed converter.
first_indexed 2025-11-14T07:10:53Z
format Journal Article
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T07:10:53Z
publishDate 2010
publisher The Institution of Engineering and Technology
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spelling curtin-20.500.11937-151112017-02-28T01:26:26Z Multi-output DC-DC converters based on diode-clamped converters configuration: Topology and control strategy Nami, A. zare, F. Ghosh, Arindam Blaabjerg, F. This study presents a new DC–DC multi-output boost (MOB) converter which can share its total outputbetween different series of output voltages for low- and high-power applications. This configuration can be utilised instead of several single output power supplies. This is a compatible topology for a diode-clamed inverter in the grid connection systems, where boosting low rectified output-voltage and series DC link capacitors is required. To verify the proposed topology, steady-state and dynamic analyses of a MOB converter are examined. A simple control strategy has been proposed to demonstrate the performance of the proposed topology for a double-output boost converter. The topology and its control strategy can easily be extended to offer multiple outputs. Simulation and experimental results are presented to show the validity of the control strategy for the proposed converter. 2010 Journal Article http://hdl.handle.net/20.500.11937/15111 The Institution of Engineering and Technology restricted
spellingShingle Nami, A.
zare, F.
Ghosh, Arindam
Blaabjerg, F.
Multi-output DC-DC converters based on diode-clamped converters configuration: Topology and control strategy
title Multi-output DC-DC converters based on diode-clamped converters configuration: Topology and control strategy
title_full Multi-output DC-DC converters based on diode-clamped converters configuration: Topology and control strategy
title_fullStr Multi-output DC-DC converters based on diode-clamped converters configuration: Topology and control strategy
title_full_unstemmed Multi-output DC-DC converters based on diode-clamped converters configuration: Topology and control strategy
title_short Multi-output DC-DC converters based on diode-clamped converters configuration: Topology and control strategy
title_sort multi-output dc-dc converters based on diode-clamped converters configuration: topology and control strategy
url http://hdl.handle.net/20.500.11937/15111