Impacts of grid-scale battery systems on power system operation, case of Baltic region

IF 2.4 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IET Smart Grid Pub Date : 2024-01-16 DOI:10.1049/stg2.12142
Roya AhmadiAhangar, Freddy Plaum, Tobias Haring, Imre Drovtar, Tarmo Korotko, Argo Rosin
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Abstract

Grid stability can be affected by the large-scale utilisation of renewable energy sources because there are fluctuations in generation and load. These issues can be effectively addressed by grid-scale battery energy storage systems (BESS), which can respond quickly and provide high energy density. Different roles of grid-scale BESS in power systems are addressed, following optimal operation approaches classification. Furthermore, integrating BESSs into distribution grids is discussed to manage challenges from distributed generation. BESSs aid in voltage control, enhance frequency regulation, and offer black-start services. Aggregating distributed BESSs can provide ancillary services and improve grid economics. For consumers, BESSs optimise energy costs, enhance reliability, and support self-consumption from renewables. Novel BESS services include congestion relief, system adequacy, and power quality enhancement. Moreover, the ancillary services provided in different European countries through BESS are analysed. Finally, a case study was conducted among three Baltic DSOs to analyse the required amendments to Grid Codes and Electricity Market Acts for the integration of grid scale BESS.

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电网规模电池系统对电力系统运行的影响,以波罗的海地区为例
大规模利用可再生能源会影响电网的稳定性,因为发电量和负荷会出现波动。电网级电池储能系统(BESS)可以快速响应并提供高能量密度,从而有效解决这些问题。根据优化运行方法分类,探讨了电网级 BESS 在电力系统中的不同作用。此外,还讨论了如何将 BESS 集成到配电网中,以应对分布式发电带来的挑战。BESS 有助于电压控制、加强频率调节并提供黑启动服务。聚集分布式 BESS 可以提供辅助服务,提高电网经济性。对消费者而言,BESS 可优化能源成本、提高可靠性并支持可再生能源的自我消费。新颖的 BESS 服务包括缓解拥塞、系统充足性和提高电能质量。此外,还分析了欧洲不同国家通过 BESS 提供的辅助服务。最后,对波罗的海地区的三个 DSO 进行了案例研究,分析了为整合电网规模的 BESS 而需要对《电网规范》和《电力市场法》进行的修订。
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来源期刊
IET Smart Grid
IET Smart Grid Computer Science-Computer Networks and Communications
CiteScore
6.70
自引率
4.30%
发文量
41
审稿时长
29 weeks
期刊最新文献
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