The use of blade individual pitch control (IPC) offers a means of reducing the harmful turbine structural loads that arise from the uneven and unsteady forcing from the oncoming wind. In recent years two different and competing IPC techniques have emerged that are characterised by the specific loads that they are primarily designed to attenuate. In the first instance, methodologies such as single-blade control and Clarke Transform-based control have been developed to reduce the unsteady loads on the rotating blades, whilst tilt-yaw control and its many variants instead target load reductions in the non rotating turbine structures, such as the tower and main bearing. Given the seeming disparities between these controllers, the aim of this pa...
Offshore wind turbines suffer from asymmetrical loading (blades, tower, etc), leading to enhanced st...
A novel approach to reducing the unbalance rotor loads by pitch control is presented in this paper. ...
Grid connected wind turbines are the sources of power fluctuations during continuous operation due t...
As the size of wind turbines increases, the effects of dynamic loading on the turbine structures bec...
Significant fore-and-aft tower vibrations of large wind turbines due to wind shear can be reduced us...
Individual pitch control (IPC) provides an important means of attenuating harmful fatigue and extrem...
Individual pitch control (IPC) for reducing blade loads has been investigated and proven successful ...
Large wind turbines are subjected to the harmful loads that arise from the spatially uneven and temp...
Load reduction is increasingly seen as an essential part of controller and wind turbine design. On l...
In this paper, we present a method to estimate the tower fore-aft velocity based upon measurements ...
Due to the increasing size of wind turbines, the unbalanced loads caused by the uneven spatial distr...
In this paper we study the use of individual blade pitch control as a way to reduce ultimate loads. ...
Wind turbines used in the electricity production nowadays are extremely large systems. Due to the in...
The development of sustainable energy production methods is an important aspect in lowering the emis...
Wind turbine blade and tower sizes have increased over the last decade, leading to an increase in me...
Offshore wind turbines suffer from asymmetrical loading (blades, tower, etc), leading to enhanced st...
A novel approach to reducing the unbalance rotor loads by pitch control is presented in this paper. ...
Grid connected wind turbines are the sources of power fluctuations during continuous operation due t...
As the size of wind turbines increases, the effects of dynamic loading on the turbine structures bec...
Significant fore-and-aft tower vibrations of large wind turbines due to wind shear can be reduced us...
Individual pitch control (IPC) provides an important means of attenuating harmful fatigue and extrem...
Individual pitch control (IPC) for reducing blade loads has been investigated and proven successful ...
Large wind turbines are subjected to the harmful loads that arise from the spatially uneven and temp...
Load reduction is increasingly seen as an essential part of controller and wind turbine design. On l...
In this paper, we present a method to estimate the tower fore-aft velocity based upon measurements ...
Due to the increasing size of wind turbines, the unbalanced loads caused by the uneven spatial distr...
In this paper we study the use of individual blade pitch control as a way to reduce ultimate loads. ...
Wind turbines used in the electricity production nowadays are extremely large systems. Due to the in...
The development of sustainable energy production methods is an important aspect in lowering the emis...
Wind turbine blade and tower sizes have increased over the last decade, leading to an increase in me...
Offshore wind turbines suffer from asymmetrical loading (blades, tower, etc), leading to enhanced st...
A novel approach to reducing the unbalance rotor loads by pitch control is presented in this paper. ...
Grid connected wind turbines are the sources of power fluctuations during continuous operation due t...