Abstract
Doubly fed induction generator (DFIG) wind turbines play a crucial role in wind energy production. However, system stability during symmetrical voltage dips remains a significant challenge. This research area focuses on enhancing protection and regulation strategies to ensure that DFIG wind turbines operate stably and efficiently even when the electrical grid experiences disturbances. In-depth simulations and behavioral analyses are utilized to propose effective control solutions, minimizing the impact of voltage dips without compromising system stability. The findings from these studies are essential for wind turbine manufacturers and operators, contributing to the overall improvement of wind energy systems.
Published Version
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