Voltage unbalances mitigation in bipolar DC microgrids using a novel three‐port multidirectional buck–boost converter

Abstract This study proposes a new three‐port multidirectional DC‐DC converter (TMC) to integrate an energy storage system (ESS) or main grid to a bipolar DC microgrid (BDCMG). This converter provides a voltage balancing function and controls the input and output power of the BDCMG so that during ov...

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Main Author: Taha Ahmadi
Format: Article
Language:English
Published: Wiley 2021-01-01
Series:IET Power Electronics
Online Access:https://doi.org/10.1049/pel2.12024
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spelling doaj-5efc641b8a354a3e8afcd43bb93adc322021-08-02T08:30:09ZengWileyIET Power Electronics1755-45351755-45432021-01-0114119220010.1049/pel2.12024Voltage unbalances mitigation in bipolar DC microgrids using a novel three‐port multidirectional buck–boost converterTaha Ahmadi0Universidad ECCI Cra. 19 #49‐20 Bogota 111311 ColombiaAbstract This study proposes a new three‐port multidirectional DC‐DC converter (TMC) to integrate an energy storage system (ESS) or main grid to a bipolar DC microgrid (BDCMG). This converter provides a voltage balancing function and controls the input and output power of the BDCMG so that during overload conditions injects power to the BDCMG and in low‐load conditions saves the available power to an ESS or transfers to the main grid. Given this integration of activities, the total number of converters in the BDCMG can be decreased. This feature enables that the converter can be used in portable systems where the overall efficiency and weight of the system are important. In the study, the performance of the proposed converter is analysed. Simulation studies are performed and a BDCMG laboratory setup is implemented in order to evaluate the performance of the proposed TMC.https://doi.org/10.1049/pel2.12024
collection DOAJ
language English
format Article
sources DOAJ
author Taha Ahmadi
spellingShingle Taha Ahmadi
Voltage unbalances mitigation in bipolar DC microgrids using a novel three‐port multidirectional buck–boost converter
IET Power Electronics
author_facet Taha Ahmadi
author_sort Taha Ahmadi
title Voltage unbalances mitigation in bipolar DC microgrids using a novel three‐port multidirectional buck–boost converter
title_short Voltage unbalances mitigation in bipolar DC microgrids using a novel three‐port multidirectional buck–boost converter
title_full Voltage unbalances mitigation in bipolar DC microgrids using a novel three‐port multidirectional buck–boost converter
title_fullStr Voltage unbalances mitigation in bipolar DC microgrids using a novel three‐port multidirectional buck–boost converter
title_full_unstemmed Voltage unbalances mitigation in bipolar DC microgrids using a novel three‐port multidirectional buck–boost converter
title_sort voltage unbalances mitigation in bipolar dc microgrids using a novel three‐port multidirectional buck–boost converter
publisher Wiley
series IET Power Electronics
issn 1755-4535
1755-4543
publishDate 2021-01-01
description Abstract This study proposes a new three‐port multidirectional DC‐DC converter (TMC) to integrate an energy storage system (ESS) or main grid to a bipolar DC microgrid (BDCMG). This converter provides a voltage balancing function and controls the input and output power of the BDCMG so that during overload conditions injects power to the BDCMG and in low‐load conditions saves the available power to an ESS or transfers to the main grid. Given this integration of activities, the total number of converters in the BDCMG can be decreased. This feature enables that the converter can be used in portable systems where the overall efficiency and weight of the system are important. In the study, the performance of the proposed converter is analysed. Simulation studies are performed and a BDCMG laboratory setup is implemented in order to evaluate the performance of the proposed TMC.
url https://doi.org/10.1049/pel2.12024
work_keys_str_mv AT tahaahmadi voltageunbalancesmitigationinbipolardcmicrogridsusinganovelthreeportmultidirectionalbuckboostconverter
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