Optimal Battery Energy Storage Dispatch Strategy for Small-Scale Isolated Hybrid Renewable Energy System with Different Load Profile Patterns

Most inhabited islands in Indonesia are powered by expensively known diesel generators and isolated from the primary grid due to either geographical or economic reasons. Meanwhile, the diesel generator can be combined with a photovoltaic (PV) system and Battery Energy Storage (BES) system to form a...

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Main Authors: Fauzan Hanif Jufri, Dwi Riana Aryani, Iwa Garniwa, Budi Sudiarto
Format: Article
Language:English
Published: MDPI AG 2021-05-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/14/11/3139
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spelling doaj-d754b7bc14d2466ebe618352bf5abb8a2021-06-01T01:24:09ZengMDPI AGEnergies1996-10732021-05-01143139313910.3390/en14113139Optimal Battery Energy Storage Dispatch Strategy for Small-Scale Isolated Hybrid Renewable Energy System with Different Load Profile PatternsFauzan Hanif Jufri0Dwi Riana Aryani1Iwa Garniwa2Budi Sudiarto3Department of Electrical Engineering, Universitas Indonesia, Depok 16424, IndonesiaDepartment of Electrical Engineering, Universitas Indonesia, Depok 16424, IndonesiaDepartment of Electrical Engineering, Universitas Indonesia, Depok 16424, IndonesiaDepartment of Electrical Engineering, Universitas Indonesia, Depok 16424, IndonesiaMost inhabited islands in Indonesia are powered by expensively known diesel generators and isolated from the primary grid due to either geographical or economic reasons. Meanwhile, the diesel generator can be combined with a photovoltaic (PV) system and Battery Energy Storage (BES) system to form a hybrid power generation system to reduce the energy cost and increase renewable energy penetration. For this, proper sizing of each power generation component is required, one of which is influenced by the applied control strategy. This paper proposes an optimal BES dispatch (OBD) control strategy that optimizes the power generation components’ sizing. The method examines the shortcomings of the other popular control strategies, such as load following, cycle charging, or combination. The optimization objectives are to minimize the Levelized Cost of Energy (LCOE) and maximize the renewable energy (RE) penetration, which can be achieved by prioritizing the BES to supply the load over other available generations and charge the BES every time the generator operates. The proposed method is implemented at two different systems with different load profiles. As a result, the proposed control strategy provides lower LCOE while maintaining higher RE penetration than the other control strategies in both locations.https://www.mdpi.com/1996-1073/14/11/3139photovoltaic (PV)battery energy storage (BES)hybrid power generationload following (LF)cycle charging (CC)combined dispatch (CD)
collection DOAJ
language English
format Article
sources DOAJ
author Fauzan Hanif Jufri
Dwi Riana Aryani
Iwa Garniwa
Budi Sudiarto
spellingShingle Fauzan Hanif Jufri
Dwi Riana Aryani
Iwa Garniwa
Budi Sudiarto
Optimal Battery Energy Storage Dispatch Strategy for Small-Scale Isolated Hybrid Renewable Energy System with Different Load Profile Patterns
Energies
photovoltaic (PV)
battery energy storage (BES)
hybrid power generation
load following (LF)
cycle charging (CC)
combined dispatch (CD)
author_facet Fauzan Hanif Jufri
Dwi Riana Aryani
Iwa Garniwa
Budi Sudiarto
author_sort Fauzan Hanif Jufri
title Optimal Battery Energy Storage Dispatch Strategy for Small-Scale Isolated Hybrid Renewable Energy System with Different Load Profile Patterns
title_short Optimal Battery Energy Storage Dispatch Strategy for Small-Scale Isolated Hybrid Renewable Energy System with Different Load Profile Patterns
title_full Optimal Battery Energy Storage Dispatch Strategy for Small-Scale Isolated Hybrid Renewable Energy System with Different Load Profile Patterns
title_fullStr Optimal Battery Energy Storage Dispatch Strategy for Small-Scale Isolated Hybrid Renewable Energy System with Different Load Profile Patterns
title_full_unstemmed Optimal Battery Energy Storage Dispatch Strategy for Small-Scale Isolated Hybrid Renewable Energy System with Different Load Profile Patterns
title_sort optimal battery energy storage dispatch strategy for small-scale isolated hybrid renewable energy system with different load profile patterns
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2021-05-01
description Most inhabited islands in Indonesia are powered by expensively known diesel generators and isolated from the primary grid due to either geographical or economic reasons. Meanwhile, the diesel generator can be combined with a photovoltaic (PV) system and Battery Energy Storage (BES) system to form a hybrid power generation system to reduce the energy cost and increase renewable energy penetration. For this, proper sizing of each power generation component is required, one of which is influenced by the applied control strategy. This paper proposes an optimal BES dispatch (OBD) control strategy that optimizes the power generation components’ sizing. The method examines the shortcomings of the other popular control strategies, such as load following, cycle charging, or combination. The optimization objectives are to minimize the Levelized Cost of Energy (LCOE) and maximize the renewable energy (RE) penetration, which can be achieved by prioritizing the BES to supply the load over other available generations and charge the BES every time the generator operates. The proposed method is implemented at two different systems with different load profiles. As a result, the proposed control strategy provides lower LCOE while maintaining higher RE penetration than the other control strategies in both locations.
topic photovoltaic (PV)
battery energy storage (BES)
hybrid power generation
load following (LF)
cycle charging (CC)
combined dispatch (CD)
url https://www.mdpi.com/1996-1073/14/11/3139
work_keys_str_mv AT fauzanhanifjufri optimalbatteryenergystoragedispatchstrategyforsmallscaleisolatedhybridrenewableenergysystemwithdifferentloadprofilepatterns
AT dwirianaaryani optimalbatteryenergystoragedispatchstrategyforsmallscaleisolatedhybridrenewableenergysystemwithdifferentloadprofilepatterns
AT iwagarniwa optimalbatteryenergystoragedispatchstrategyforsmallscaleisolatedhybridrenewableenergysystemwithdifferentloadprofilepatterns
AT budisudiarto optimalbatteryenergystoragedispatchstrategyforsmallscaleisolatedhybridrenewableenergysystemwithdifferentloadprofilepatterns
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