Modified Master–Slave Controller for Stable Power Supply of Energy Storage Based Microgrid

This paper presents a method for supplying stable electricity using renewable energy sources and energy storage systems (ESSs) in a small-scale microgrid (MG) such as an island. Traditional control methods, such as master–slave control and droop control, have focused on equalizing power sharing amon...

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Main Author: Byoung-chang Jeong
Format: Article
Language:English
Published: MDPI AG 2022-06-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/15/12/4245
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author Byoung-chang Jeong
author_facet Byoung-chang Jeong
author_sort Byoung-chang Jeong
collection DOAJ
description This paper presents a method for supplying stable electricity using renewable energy sources and energy storage systems (ESSs) in a small-scale microgrid (MG) such as an island. Traditional control methods, such as master–slave control and droop control, have focused on equalizing power sharing among a small number of generators and do not deal well with emergencies such as unplanned generator failures. This paper proposes a control method that can stably maintain the frequency of the MG in various situations by combining the advantages of master–slave control and droop control and complementing the disadvantages. Simulations were performed under various conditions to verify the proposed control method.
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spelling doaj.art-39b17174cea343d8a2b29525b5fa80022023-11-23T16:27:57ZengMDPI AGEnergies1996-10732022-06-011512424510.3390/en15124245Modified Master–Slave Controller for Stable Power Supply of Energy Storage Based MicrogridByoung-chang Jeong0Realtech Co., Ltd., Youngin 17043, Gyeonggi, KoreaThis paper presents a method for supplying stable electricity using renewable energy sources and energy storage systems (ESSs) in a small-scale microgrid (MG) such as an island. Traditional control methods, such as master–slave control and droop control, have focused on equalizing power sharing among a small number of generators and do not deal well with emergencies such as unplanned generator failures. This paper proposes a control method that can stably maintain the frequency of the MG in various situations by combining the advantages of master–slave control and droop control and complementing the disadvantages. Simulations were performed under various conditions to verify the proposed control method.https://www.mdpi.com/1996-1073/15/12/4245microgridenergy storageisland operationpower sharingstable frequency
spellingShingle Byoung-chang Jeong
Modified Master–Slave Controller for Stable Power Supply of Energy Storage Based Microgrid
Energies
microgrid
energy storage
island operation
power sharing
stable frequency
title Modified Master–Slave Controller for Stable Power Supply of Energy Storage Based Microgrid
title_full Modified Master–Slave Controller for Stable Power Supply of Energy Storage Based Microgrid
title_fullStr Modified Master–Slave Controller for Stable Power Supply of Energy Storage Based Microgrid
title_full_unstemmed Modified Master–Slave Controller for Stable Power Supply of Energy Storage Based Microgrid
title_short Modified Master–Slave Controller for Stable Power Supply of Energy Storage Based Microgrid
title_sort modified master slave controller for stable power supply of energy storage based microgrid
topic microgrid
energy storage
island operation
power sharing
stable frequency
url https://www.mdpi.com/1996-1073/15/12/4245
work_keys_str_mv AT byoungchangjeong modifiedmasterslavecontrollerforstablepowersupplyofenergystoragebasedmicrogrid