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The control of wind turbine loads is fundamental to reduce wind energy cost.
In this research, a new adaptive control strategy is formulated for the pitch control of wind turbine that may suffer from reduced life owing to extreme loads and fatigue when operated under high wind speed and internal structural uncertainties.
Similar(58)
This work investigates the memory-based method for variable speed control of wind turbines.
Advanced model-based control of wind turbines requires knowledge of the states and the wind speed.
Control of wind turbines has been the subject of intense research activity these last decades.
This paper considers the control of wind turbines using an LPV design technique.
A new simultaneous speed and pitch control of wind turbines with the preview measurements and look-ahead calculations is considered.
The importance of considering soil structure interaction in structural control of wind turbines is investigated in this paper.
The control of wind turbines (WTs) plays a key role in wind energy applications, ensuring their high efficiency and cost-effectiveness.
In summary, wind energy is a fast growing industry, and this growth has led to a large demand for better modeling and control of wind turbines.
Furthermore, it is demonstrated that vibration control of wind turbines using the proposed active control scheme has a promising prospect in situations where soil parameter values are uncertain.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com