Underground energy storage system supported resilience enhancement for power system in high penetration of renewable energy

High penetration of renewable energy is becoming an important development trend in new generation power system. However, frequent extreme weather events and fragile renewable energy sources pose a huge challenge to the power system resilience. As an important support technology of renewables, energy...

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Main Authors: Boyu Qin, Wen Shi, Ruoquan Fang, Dongyang Wu, Yu Zhu, Hongzhen Wang
Format: Article
Language:English
Published: Frontiers Media S.A. 2023-05-01
Series:Frontiers in Energy Research
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fenrg.2023.1138318/full
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author Boyu Qin
Wen Shi
Ruoquan Fang
Dongyang Wu
Yu Zhu
Hongzhen Wang
author_facet Boyu Qin
Wen Shi
Ruoquan Fang
Dongyang Wu
Yu Zhu
Hongzhen Wang
author_sort Boyu Qin
collection DOAJ
description High penetration of renewable energy is becoming an important development trend in new generation power system. However, frequent extreme weather events and fragile renewable energy sources pose a huge challenge to the power system resilience. As an important support technology of renewables, energy storage system is of great significance in improving the resilience of the power system. In this paper, a resilience enhancement method for power systems with high penetration of renewable energy based on underground energy storage systems (UESS) is proposed. Firstly, a resilience assessment model is established and the influence of extreme weather is quantified as the failure rate of power system components. Secondly, a bi-level optimization model for UESS operation and planning under extreme weather is built, and the life cycle of UESS is considered. Finally, taking the modified IEEE RTS-79 as an example, the optimal scheme for UESS configuration and operation is given, the investment and effectiveness of UESS is also analyzed. The results show that UESS can significantly enhance the power system resilience under extreme weather events.
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spelling doaj.art-8e427c04abb94719a26cc92bf8b8610f2023-05-23T04:54:39ZengFrontiers Media S.A.Frontiers in Energy Research2296-598X2023-05-011110.3389/fenrg.2023.11383181138318Underground energy storage system supported resilience enhancement for power system in high penetration of renewable energyBoyu Qin0Wen Shi1Ruoquan Fang2Dongyang Wu3Yu Zhu4Hongzhen Wang5State Key Laboratory of Electrical Insulation and Power Equipment, Xi’an Jiaotong University, Xi’an, ChinaState Key Laboratory of Electrical Insulation and Power Equipment, Xi’an Jiaotong University, Xi’an, ChinaJiangsu Transportation Engineering Construction Bureau, Nanjing, ChinaJiangsu Transportation Engineering Construction Bureau, Nanjing, ChinaJiangsu Transportation Engineering Construction Bureau, Nanjing, ChinaState Key Laboratory of Electrical Insulation and Power Equipment, Xi’an Jiaotong University, Xi’an, ChinaHigh penetration of renewable energy is becoming an important development trend in new generation power system. However, frequent extreme weather events and fragile renewable energy sources pose a huge challenge to the power system resilience. As an important support technology of renewables, energy storage system is of great significance in improving the resilience of the power system. In this paper, a resilience enhancement method for power systems with high penetration of renewable energy based on underground energy storage systems (UESS) is proposed. Firstly, a resilience assessment model is established and the influence of extreme weather is quantified as the failure rate of power system components. Secondly, a bi-level optimization model for UESS operation and planning under extreme weather is built, and the life cycle of UESS is considered. Finally, taking the modified IEEE RTS-79 as an example, the optimal scheme for UESS configuration and operation is given, the investment and effectiveness of UESS is also analyzed. The results show that UESS can significantly enhance the power system resilience under extreme weather events.https://www.frontiersin.org/articles/10.3389/fenrg.2023.1138318/fullresilienceunderground spaceenergy storagerenewable energybi-level optimization model
spellingShingle Boyu Qin
Wen Shi
Ruoquan Fang
Dongyang Wu
Yu Zhu
Hongzhen Wang
Underground energy storage system supported resilience enhancement for power system in high penetration of renewable energy
Frontiers in Energy Research
resilience
underground space
energy storage
renewable energy
bi-level optimization model
title Underground energy storage system supported resilience enhancement for power system in high penetration of renewable energy
title_full Underground energy storage system supported resilience enhancement for power system in high penetration of renewable energy
title_fullStr Underground energy storage system supported resilience enhancement for power system in high penetration of renewable energy
title_full_unstemmed Underground energy storage system supported resilience enhancement for power system in high penetration of renewable energy
title_short Underground energy storage system supported resilience enhancement for power system in high penetration of renewable energy
title_sort underground energy storage system supported resilience enhancement for power system in high penetration of renewable energy
topic resilience
underground space
energy storage
renewable energy
bi-level optimization model
url https://www.frontiersin.org/articles/10.3389/fenrg.2023.1138318/full
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AT dongyangwu undergroundenergystoragesystemsupportedresilienceenhancementforpowersysteminhighpenetrationofrenewableenergy
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