A vision of flexible dispatchable hybrid solar‐wind‐energy storage power plant
Abstract Dispatchable renewable generation is essential for 100% renewables power system. It is in the interest of both power system operators and customers since it reduces the need for flexibility and reserve. To this end, battery energy storage systems (BESS) are proposed for integration in the r...
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Online Access: | https://doi.org/10.1049/rpg2.12234 |
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doaj-4b72a3e741524eecaf1a456611447f232021-09-01T10:25:26ZengWileyIET Renewable Power Generation1752-14161752-14242021-10-0115132983299610.1049/rpg2.12234A vision of flexible dispatchable hybrid solar‐wind‐energy storage power plantMostafa Bakhtvar0Amer Al Hinai1Mohamed S. El Moursi2Mohammed H. Albadi3Future Operations Department EirGrid Plc. Dublin IrelandDepartment of Electrical and Computer Engineering Sultan Qaboos University Alkhoud Muscat 123 OmanDepartment of Electrical and Computer Engineering Khalifa University Abudhabi UAEDepartment of Electrical and Computer Engineering Sultan Qaboos University Alkhoud Muscat 123 OmanAbstract Dispatchable renewable generation is essential for 100% renewables power system. It is in the interest of both power system operators and customers since it reduces the need for flexibility and reserve. To this end, battery energy storage systems (BESS) are proposed for integration in the renewable power plant. This paper presents the optimal dispatch unit for a dispatchable hybrid solar‐wind power plant with BESS framework. It achieves optimal dispatchable renewable generation (from dispatchable hybrid renewable (solar‐wind) power plant with BESS, DHRB, operator perspective), subject to operational limits, by exploiting the synergy of wind and solar energy and combining it with storage capability of BESS using two different operation strategies, maximisation of revenues and maximisation of renewables harvesting. A continuous BESS degradation model is incorporated in the proposed rolling‐algorithm‐based‐optimal dispatch unit to improve the accuracy of results. The applicability of the proposed methodology and the performance of the operation strategies are demonstrated using a case study and the operation strategies are compared. Further, the effect of BESS size on its degradation and dispatchable power in a hybrid solar‐wind power plant with BESS are investigated through BESS lifetime. An indicative economic analysis is carried out to provide ground for the extra investment on and sizing of BESS for a dispatchable hybrid renewable power plant.https://doi.org/10.1049/rpg2.12234 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mostafa Bakhtvar Amer Al Hinai Mohamed S. El Moursi Mohammed H. Albadi |
spellingShingle |
Mostafa Bakhtvar Amer Al Hinai Mohamed S. El Moursi Mohammed H. Albadi A vision of flexible dispatchable hybrid solar‐wind‐energy storage power plant IET Renewable Power Generation |
author_facet |
Mostafa Bakhtvar Amer Al Hinai Mohamed S. El Moursi Mohammed H. Albadi |
author_sort |
Mostafa Bakhtvar |
title |
A vision of flexible dispatchable hybrid solar‐wind‐energy storage power plant |
title_short |
A vision of flexible dispatchable hybrid solar‐wind‐energy storage power plant |
title_full |
A vision of flexible dispatchable hybrid solar‐wind‐energy storage power plant |
title_fullStr |
A vision of flexible dispatchable hybrid solar‐wind‐energy storage power plant |
title_full_unstemmed |
A vision of flexible dispatchable hybrid solar‐wind‐energy storage power plant |
title_sort |
vision of flexible dispatchable hybrid solar‐wind‐energy storage power plant |
publisher |
Wiley |
series |
IET Renewable Power Generation |
issn |
1752-1416 1752-1424 |
publishDate |
2021-10-01 |
description |
Abstract Dispatchable renewable generation is essential for 100% renewables power system. It is in the interest of both power system operators and customers since it reduces the need for flexibility and reserve. To this end, battery energy storage systems (BESS) are proposed for integration in the renewable power plant. This paper presents the optimal dispatch unit for a dispatchable hybrid solar‐wind power plant with BESS framework. It achieves optimal dispatchable renewable generation (from dispatchable hybrid renewable (solar‐wind) power plant with BESS, DHRB, operator perspective), subject to operational limits, by exploiting the synergy of wind and solar energy and combining it with storage capability of BESS using two different operation strategies, maximisation of revenues and maximisation of renewables harvesting. A continuous BESS degradation model is incorporated in the proposed rolling‐algorithm‐based‐optimal dispatch unit to improve the accuracy of results. The applicability of the proposed methodology and the performance of the operation strategies are demonstrated using a case study and the operation strategies are compared. Further, the effect of BESS size on its degradation and dispatchable power in a hybrid solar‐wind power plant with BESS are investigated through BESS lifetime. An indicative economic analysis is carried out to provide ground for the extra investment on and sizing of BESS for a dispatchable hybrid renewable power plant. |
url |
https://doi.org/10.1049/rpg2.12234 |
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