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29-04-2024 | Original Paper

Decoupled feed-forward control model enhancement for low voltage ride through capability in DFIG-based wind turbines

Author: M. Kenan Döşoğlu

Published in: Electrical Engineering | Issue 6/2024

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Abstract

The article delves into the critical issue of integrating wind energy into complex power systems, focusing on the Double Fed Induction Generator (DFIG) due to its efficient variable speed operation and active-reactive power control. The study introduces an advanced decoupled feed-forward control model to enhance the low voltage ride through (LVRT) capability of DFIG-based wind turbines. This model addresses the challenges posed by voltage drops and transient stability issues during faults, leveraging positive, negative, natural, and forced sequence models. The authors develop a stator EMF model to improve system performance and reduce computational difficulties. The simulation study demonstrates the effectiveness of the proposed model in stabilizing the system and dampening oscillations during various fault scenarios, including 3-phase, 2-phase, and phase-ground faults. The results show significant improvements in bus voltages and DFIG terminal voltages, highlighting the potential of the decoupled FFC model in enhancing grid stability and reliability.

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Metadata
Title
Decoupled feed-forward control model enhancement for low voltage ride through capability in DFIG-based wind turbines
Author
M. Kenan Döşoğlu
Publication date
29-04-2024
Publisher
Springer Berlin Heidelberg
Published in
Electrical Engineering / Issue 6/2024
Print ISSN: 0948-7921
Electronic ISSN: 1432-0487
DOI
https://doi.org/10.1007/s00202-024-02414-8