Two different lidar-based feedforward controllers have previously been designed for the NREL 5 MW wind turbine model under separate studies. Feedforward controller A uses a finite-impulse-response design, with 5 seconds of preview, and three rotating lidar measurements. Feedforward controller B uses a static-gain design, with the preview time defined by the pitch actuator dynamics, a simulation of a real nacelle-based scanning lidar system, and a lowpass filter defined by the lidar configuration. These controllers are now directly compared under the same lidar configuration, in terms of fatigue load reduction, rotor speed regulation, and power capture. The various differences in design choices are discussed and compared. We also compare fre...
The development of the Light Detection and Ranging (LIDAR) technology has enabled wider options for ...
Lidar-assisted individual pitch control (IPC) has been investigated occasionally in recent years, fo...
For the development of the next generation of multi megawatt wind turbines, advanced control concept...
Recent development in LIght Detection And Ranging (LIDAR) systems, which can provide measurements of...
In above-rated wind speeds, the goal of a wind turbine blade pitch controller is to regulate rotor s...
LIDAR systems are able to provide preview information of wind disturbances at various distances in f...
To investigate potential improvement in wind turbine control employing LIDAR measurement, pseudo-LID...
Feedforward blade pitch control is one of the most promising lidar-assisted control strategies due t...
Current lidar technology is offering a promising opportunity to take a fresh look at wind turbine co...
The use of nacelle lidar measurements for wind turbine control applications has been widely studied ...
Presentation at the Wind Energy Science Conference 2023 as part of the Mini Symposium "IEA Wind Task...
Minimising tower loads is a key issue for the optimal operation and cost-effective design of wind tu...
In this work a multi-variable feedforward controller for floating wind turbines is presented. The fe...
Lidar systems installed on the nacelle of wind turbines can provide a preview of incoming turbulent ...
Abstract. This work presents the first results from a field test to proof the concept of LIDAR assis...
The development of the Light Detection and Ranging (LIDAR) technology has enabled wider options for ...
Lidar-assisted individual pitch control (IPC) has been investigated occasionally in recent years, fo...
For the development of the next generation of multi megawatt wind turbines, advanced control concept...
Recent development in LIght Detection And Ranging (LIDAR) systems, which can provide measurements of...
In above-rated wind speeds, the goal of a wind turbine blade pitch controller is to regulate rotor s...
LIDAR systems are able to provide preview information of wind disturbances at various distances in f...
To investigate potential improvement in wind turbine control employing LIDAR measurement, pseudo-LID...
Feedforward blade pitch control is one of the most promising lidar-assisted control strategies due t...
Current lidar technology is offering a promising opportunity to take a fresh look at wind turbine co...
The use of nacelle lidar measurements for wind turbine control applications has been widely studied ...
Presentation at the Wind Energy Science Conference 2023 as part of the Mini Symposium "IEA Wind Task...
Minimising tower loads is a key issue for the optimal operation and cost-effective design of wind tu...
In this work a multi-variable feedforward controller for floating wind turbines is presented. The fe...
Lidar systems installed on the nacelle of wind turbines can provide a preview of incoming turbulent ...
Abstract. This work presents the first results from a field test to proof the concept of LIDAR assis...
The development of the Light Detection and Ranging (LIDAR) technology has enabled wider options for ...
Lidar-assisted individual pitch control (IPC) has been investigated occasionally in recent years, fo...
For the development of the next generation of multi megawatt wind turbines, advanced control concept...