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An LQR Controller for Damping of Subsynchronous Interaction in DFIG-Based Wind Farms
Date
2017-11-01
Author
Ghafouri, Mohsen
Karaağaç, Ulaş
Karimi, Houshang
Jensen, Simon
Mahseredjian, Jean
Faried, Sherif O.
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This paper presents a linear-quadratic regulator (LQR) for damping of subsynchronous interaction (SSI) in doubly-fed induction generator (DFIG)-based wind farms. The proposed LQR controller employs a full-state observer to estimate all state variables. The output of the LQR is added to control signals of inner current control loops of DFIG converters as supplementary control signals. The supplementary control signals are dynamically limited to avoid saturating the converters and to provide the DFIG with the desired transient response against power system faults. The proposed SSI damping controller is designed for a realistic series compensated wind farm, and its performance is verified using electromagnetic transient (EMT) simulations. The EMT simulations are performed using a detailed DFIG model which includes all nonlinearities and all required transient functions to meet the grid code requirements corresponding to fault-ride-through (FRT). The results show that the proposed SSI controller is able to significantly mitigate the oscillations due to the SSI phenomenon, and to provide excellent transient response against systems faults.
URI
https://hdl.handle.net/11511/114742
Journal
IEEE TRANSACTIONS ON POWER SYSTEMS
DOI
https://doi.org/10.1109/tpwrs.2017.2669260
Collections
Department of Electrical and Electronics Engineering, Article
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BibTeX
M. Ghafouri, U. Karaağaç, H. Karimi, S. Jensen, J. Mahseredjian, and S. O. Faried, “An LQR Controller for Damping of Subsynchronous Interaction in DFIG-Based Wind Farms,”
IEEE TRANSACTIONS ON POWER SYSTEMS
, vol. 32, no. 6, pp. 4934–4942, 2017, Accessed: 00, 2025. [Online]. Available: https://hdl.handle.net/11511/114742.