LAPSE:2023.12779
Published Article
LAPSE:2023.12779
Modelling of Battery Energy Storage System Providing FCR in Baltic Power System after Synchronization with the Continental Synchronous Area
Edgars Groza, Santa Kiene, Olegs Linkevics, Karlis Gicevskis
February 28, 2023
Abstract
This paper presents the case study of provisions of frequency containment reserve (FCR) with a battery electric storage system (BESS). The aim of the case study is the evaluation of the technical possibility to provide FCR in Latvian power systems after all Baltic power systems will synchronize with the Continental Europe Synchronous Area (CESA). To simulate the dynamics of BESS capacity and its state of charge (SOC), authors have developed an algorithm and mathematical model (it can be realized in different calculation programs). The case study calculations verified the model. The algorithm is conditionally divided into two parts—FCR provision and SOC recovery−which in turn is divided into three possible models of BESS state of charge recovery options: (1) overfulfillment—exceeding the specified FCR amount, (2) deadband utilization, and (3) BESS charging or discharging through scheduled transactions in intraday power market. The modelling was performed using historic frequency data of Latvian and French power systems. The case study of BESS with charging capacity of 12 MW and stored energy volume of 7 MWh for provision of determined FCR for Latvian power system was considered. The obtained results from the simulation were used in the separate model to evaluate economic feasibility of BESS for FCR.
Keywords
algorithm, battery electric storage, FCR, frequency control, Simulation, state of charge recovery
Suggested Citation
Groza E, Kiene S, Linkevics O, Gicevskis K. Modelling of Battery Energy Storage System Providing FCR in Baltic Power System after Synchronization with the Continental Synchronous Area. (2023). LAPSE:2023.12779
Author Affiliations
Groza E: Department of Electrical Machines and Apparatus, Institute of Power Engineering, Riga Technical University, 12-k1 Azenes Street, LV-1010 Riga, Latvia
Kiene S: Institute of Power Engineering, Riga Technical University, 12-k1 Azenes Street, LV-1010 Riga, Latvia
Linkevics O: Institute of Power Engineering, Riga Technical University, 12-k1 Azenes Street, LV-1010 Riga, Latvia
Gicevskis K: Institute of Power Engineering, Riga Technical University, 12-k1 Azenes Street, LV-1010 Riga, Latvia
Journal Name
Energies
Volume
15
Issue
11
First Page
3977
Year
2022
Publication Date
2022-05-27
ISSN
1996-1073
Version Comments
Original Submission
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PII: en15113977, Publication Type: Journal Article
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LAPSE:2023.12779
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https://doi.org/10.3390/en15113977
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