LAPSE:2023.21672
Published Article

LAPSE:2023.21672
Combined Control of DFIG-Based Wind Turbine and Battery Energy Storage System for Frequency Response in Microgrids
March 22, 2023
Abstract
This paper presents a novel methodology for frequency control of a microgrid through doubly fed induction generator (DFIG) employing battery energy storage system (BESS) and droop control. The proposed microgrid frequency control is the result of the active power injection from the droop control implemented in the grid side converter (GSC) of the DFIG, and the BESS implemented in the DC link of the back-to-back converter also in the DFIG. This methodology guarantees the battery system charge during operation of the connected DFIG in the network, and the frequency control in microgrid operation after an intentional disturbance. In order for the DFIG to provide frequency support to the microgrid, the best-performing droop gain value is selected. Afterwards its performance is evaluated individually and together with the power injected by the battery. The power used for both battery charging and frequency support is managed and processed by the GSC without affecting the normal operation of the wind system. The simulation tests are performed using Matlab/Simulink toolbox.
This paper presents a novel methodology for frequency control of a microgrid through doubly fed induction generator (DFIG) employing battery energy storage system (BESS) and droop control. The proposed microgrid frequency control is the result of the active power injection from the droop control implemented in the grid side converter (GSC) of the DFIG, and the BESS implemented in the DC link of the back-to-back converter also in the DFIG. This methodology guarantees the battery system charge during operation of the connected DFIG in the network, and the frequency control in microgrid operation after an intentional disturbance. In order for the DFIG to provide frequency support to the microgrid, the best-performing droop gain value is selected. Afterwards its performance is evaluated individually and together with the power injected by the battery. The power used for both battery charging and frequency support is managed and processed by the GSC without affecting the normal operation of the wind system. The simulation tests are performed using Matlab/Simulink toolbox.
Record ID
Keywords
battery energy storage system (BESS), battery management, doubly fed induction generator (DFIG), droop control, frequency control
Subject
Suggested Citation
Gomez LAG, Grilo AP, Salles MBC, Sguarezi Filho AJ. Combined Control of DFIG-Based Wind Turbine and Battery Energy Storage System for Frequency Response in Microgrids. (2023). LAPSE:2023.21672
Author Affiliations
Gomez LAG: Laboratory of Advanced Electric Grids-LGrid, Polytechnic School, University of São Paulo - USP, São Paulo CO 05508-010, Brazil [ORCID]
Grilo AP: Center for Engineering, Modeling and Applied Social Sciences (CECS), Federal University of ABC (UFABC), Santo Andre CO 09210-580, Brazil
Salles MBC: Laboratory of Advanced Electric Grids-LGrid, Polytechnic School, University of São Paulo - USP, São Paulo CO 05508-010, Brazil [ORCID]
Sguarezi Filho AJ: Center for Engineering, Modeling and Applied Social Sciences (CECS), Federal University of ABC (UFABC), Santo Andre CO 09210-580, Brazil
Grilo AP: Center for Engineering, Modeling and Applied Social Sciences (CECS), Federal University of ABC (UFABC), Santo Andre CO 09210-580, Brazil
Salles MBC: Laboratory of Advanced Electric Grids-LGrid, Polytechnic School, University of São Paulo - USP, São Paulo CO 05508-010, Brazil [ORCID]
Sguarezi Filho AJ: Center for Engineering, Modeling and Applied Social Sciences (CECS), Federal University of ABC (UFABC), Santo Andre CO 09210-580, Brazil
Journal Name
Energies
Volume
13
Issue
4
Article Number
E894
Year
2020
Publication Date
2020-02-18
ISSN
1996-1073
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Original Submission
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PII: en13040894, Publication Type: Journal Article
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LAPSE:2023.21672
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https://doi.org/10.3390/en13040894
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Mar 22, 2023
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