Solar‐powered switched reluctance motor‐driven water pumping system with battery support
Abstract This work deals with the development of an efficient and reliable solar photovoltaic‐fed water pump with a battery energy storage (BES). This system ensures a continuous and rated supply of water in all working conditions. A new control logic for BES is developed, which significantly improv...
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Online Access: | https://doi.org/10.1049/pel2.12084 |
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doaj-6f6ee0e4dcd1407a9e3dbee2413bd2c72021-08-02T08:25:16ZengWileyIET Power Electronics1755-45351755-45432021-04-011451018103110.1049/pel2.12084Solar‐powered switched reluctance motor‐driven water pumping system with battery supportAnjanee Kumar Mishra0Bhim Singh1Department of Electrical and Computer Engineering University of Michigan Dearborn Michigan USADepartment of Electrical Engineering Indian Institute of Technology Delhi Hauz Khas New Delhi 110016 IndiaAbstract This work deals with the development of an efficient and reliable solar photovoltaic‐fed water pump with a battery energy storage (BES). This system ensures a continuous and rated supply of water in all working conditions. A new control logic for BES is developed, which significantly improves the overall response of the system. The support of the battery as a backup source is obtained through a bidirectional DC‐DC converter. Both the charging/discharging control and maximum power tracking of the solar panel are achieved through this bidirectional converter, whereas the voltage asymmetry compensation across split capacitors at DC link and motor drive controls are supervised by switched reluctance motor converter. The performance of the present scheme is examined through both simulated and experimental responses and is found adequate under all operational scenarios.https://doi.org/10.1049/pel2.12084 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Anjanee Kumar Mishra Bhim Singh |
spellingShingle |
Anjanee Kumar Mishra Bhim Singh Solar‐powered switched reluctance motor‐driven water pumping system with battery support IET Power Electronics |
author_facet |
Anjanee Kumar Mishra Bhim Singh |
author_sort |
Anjanee Kumar Mishra |
title |
Solar‐powered switched reluctance motor‐driven water pumping system with battery support |
title_short |
Solar‐powered switched reluctance motor‐driven water pumping system with battery support |
title_full |
Solar‐powered switched reluctance motor‐driven water pumping system with battery support |
title_fullStr |
Solar‐powered switched reluctance motor‐driven water pumping system with battery support |
title_full_unstemmed |
Solar‐powered switched reluctance motor‐driven water pumping system with battery support |
title_sort |
solar‐powered switched reluctance motor‐driven water pumping system with battery support |
publisher |
Wiley |
series |
IET Power Electronics |
issn |
1755-4535 1755-4543 |
publishDate |
2021-04-01 |
description |
Abstract This work deals with the development of an efficient and reliable solar photovoltaic‐fed water pump with a battery energy storage (BES). This system ensures a continuous and rated supply of water in all working conditions. A new control logic for BES is developed, which significantly improves the overall response of the system. The support of the battery as a backup source is obtained through a bidirectional DC‐DC converter. Both the charging/discharging control and maximum power tracking of the solar panel are achieved through this bidirectional converter, whereas the voltage asymmetry compensation across split capacitors at DC link and motor drive controls are supervised by switched reluctance motor converter. The performance of the present scheme is examined through both simulated and experimental responses and is found adequate under all operational scenarios. |
url |
https://doi.org/10.1049/pel2.12084 |
work_keys_str_mv |
AT anjaneekumarmishra solarpoweredswitchedreluctancemotordrivenwaterpumpingsystemwithbatterysupport AT bhimsingh solarpoweredswitchedreluctancemotordrivenwaterpumpingsystemwithbatterysupport |
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1721238263957553152 |