Dynamic Inertia Response Support by Energy Storage System with Renewable Energy Integration Substation
In recent years, the expansion of renewable energy in electric power systems has been increasing at such a rapid pace that it has started affecting frequency stability. Renewable generators connected to the grid produce variable amounts of power, and in most cases have no inherent inertia response (...
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Format: | Article |
Language: | English |
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IEEE
2020-01-01
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Series: | Journal of Modern Power Systems and Clean Energy |
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Online Access: | https://ieeexplore.ieee.org/document/8891059/ |
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author | Yeuntae Yoo Seungmin Jung Gilsoo Jang |
author_facet | Yeuntae Yoo Seungmin Jung Gilsoo Jang |
author_sort | Yeuntae Yoo |
collection | DOAJ |
description | In recent years, the expansion of renewable energy in electric power systems has been increasing at such a rapid pace that it has started affecting frequency stability. Renewable generators connected to the grid produce variable amounts of power, and in most cases have no inherent inertia response (IR) to the system frequency. Therefore, the high penetration of renewable generators in the system results in low inertia and frequency distortion. If renewable generators account for a high proportion of the supply in a power system, the use of energy storage systems (ESSs) with frequency-support algorithms (in the place of synchronous generators) can stabilize the network. The participation of ESSs in frequency support must be organized precisely, so that they are fully devoted to their own purpose. In this paper, the frequency-support parameters of ESSs are calculated for achieving stable frequency response from a network. An estimation and calibration process is conducted during the active power-order change of the ESSs in the substation, and is verified through electromagnetic-transients-including-DC (EMTDC)-based simulations. |
first_indexed | 2024-12-14T23:02:02Z |
format | Article |
id | doaj.art-31eb3428f5af48ccbdcd2a1b127070c4 |
institution | Directory Open Access Journal |
issn | 2196-5420 |
language | English |
last_indexed | 2024-12-14T23:02:02Z |
publishDate | 2020-01-01 |
publisher | IEEE |
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series | Journal of Modern Power Systems and Clean Energy |
spelling | doaj.art-31eb3428f5af48ccbdcd2a1b127070c42022-12-21T22:44:25ZengIEEEJournal of Modern Power Systems and Clean Energy2196-54202020-01-018226026610.35833/MPCE.2018.0007608891059Dynamic Inertia Response Support by Energy Storage System with Renewable Energy Integration SubstationYeuntae Yoo0Seungmin Jung1Gilsoo Jang2Korea University,Seoul,KoreaHanbat National University,Daejeon,KoreaKorea University,Seoul,KoreaIn recent years, the expansion of renewable energy in electric power systems has been increasing at such a rapid pace that it has started affecting frequency stability. Renewable generators connected to the grid produce variable amounts of power, and in most cases have no inherent inertia response (IR) to the system frequency. Therefore, the high penetration of renewable generators in the system results in low inertia and frequency distortion. If renewable generators account for a high proportion of the supply in a power system, the use of energy storage systems (ESSs) with frequency-support algorithms (in the place of synchronous generators) can stabilize the network. The participation of ESSs in frequency support must be organized precisely, so that they are fully devoted to their own purpose. In this paper, the frequency-support parameters of ESSs are calculated for achieving stable frequency response from a network. An estimation and calibration process is conducted during the active power-order change of the ESSs in the substation, and is verified through electromagnetic-transients-including-DC (EMTDC)-based simulations.https://ieeexplore.ieee.org/document/8891059/Energy storage system (ESS)frequency responseinertiarenewable energy substation |
spellingShingle | Yeuntae Yoo Seungmin Jung Gilsoo Jang Dynamic Inertia Response Support by Energy Storage System with Renewable Energy Integration Substation Journal of Modern Power Systems and Clean Energy Energy storage system (ESS) frequency response inertia renewable energy substation |
title | Dynamic Inertia Response Support by Energy Storage System with Renewable Energy Integration Substation |
title_full | Dynamic Inertia Response Support by Energy Storage System with Renewable Energy Integration Substation |
title_fullStr | Dynamic Inertia Response Support by Energy Storage System with Renewable Energy Integration Substation |
title_full_unstemmed | Dynamic Inertia Response Support by Energy Storage System with Renewable Energy Integration Substation |
title_short | Dynamic Inertia Response Support by Energy Storage System with Renewable Energy Integration Substation |
title_sort | dynamic inertia response support by energy storage system with renewable energy integration substation |
topic | Energy storage system (ESS) frequency response inertia renewable energy substation |
url | https://ieeexplore.ieee.org/document/8891059/ |
work_keys_str_mv | AT yeuntaeyoo dynamicinertiaresponsesupportbyenergystoragesystemwithrenewableenergyintegrationsubstation AT seungminjung dynamicinertiaresponsesupportbyenergystoragesystemwithrenewableenergyintegrationsubstation AT gilsoojang dynamicinertiaresponsesupportbyenergystoragesystemwithrenewableenergyintegrationsubstation |