A Simulink model of a 20MW multi rotor system (MRS) is built containing all the necessary detail to demonstrate yaw control for a novel yawing technique. The aerodynamics of each rotor are based on blade element momentum theory summed across a single actuator with the rotor and power conversion system modelled as a lumped mass model. A yaw controller is designed which operates by manipulating the thrusts of the rotors. The feasibility of this yaw mechanism is demonstrated by implementing it at wind speeds of 8m/s, 11m/s and 15m/s. At each wind speed the system remained stable with the yaw error kept within a maximum of 5 degrees over a two hour period
The article considers the possibility of using hydrophobic coatings on the internal surfaces of main...
Active control is becoming more and more important for the wind energy community. If we compare the ...
Multi-rotor floating offshore wind turbines have been recently proposed as an innovative technology ...
In this paper, wake steering is applied to multirotor turbines to determine whether it has the poten...
Looking at the upscaling of the rotor diameter not only the loss in power production but the aerodyn...
Individual pitch control (IPC) for reducing blade loads has been investigated and proven successful ...
The upscaling of wind turbines results in fewer units per installed MW reducing infrastructure and m...
This paper presents, with a live field experiment, the potential of increasing wind farm power genera...
With the increasing need for more renewable energy, offshore wind energy has been identified as a cr...
Yaw angle control is known nowadays as a promising and effective technique to mitigate wake effects ...
New systems for the aerodynamic control of wind turbine rotors are being studied in various projects...
The share of wind energy in modern societies energy supply increases constantly. Whereas blade pitch...
This paper presents, with a live field experiment, the potential of increasing wind farm power genera...
As wind turbines increase in size, combined with increased lifetime demands, new methods for load re...
Inside wind farms, the wakes of upwind turbines result in a significant reduction in power productio...
The article considers the possibility of using hydrophobic coatings on the internal surfaces of main...
Active control is becoming more and more important for the wind energy community. If we compare the ...
Multi-rotor floating offshore wind turbines have been recently proposed as an innovative technology ...
In this paper, wake steering is applied to multirotor turbines to determine whether it has the poten...
Looking at the upscaling of the rotor diameter not only the loss in power production but the aerodyn...
Individual pitch control (IPC) for reducing blade loads has been investigated and proven successful ...
The upscaling of wind turbines results in fewer units per installed MW reducing infrastructure and m...
This paper presents, with a live field experiment, the potential of increasing wind farm power genera...
With the increasing need for more renewable energy, offshore wind energy has been identified as a cr...
Yaw angle control is known nowadays as a promising and effective technique to mitigate wake effects ...
New systems for the aerodynamic control of wind turbine rotors are being studied in various projects...
The share of wind energy in modern societies energy supply increases constantly. Whereas blade pitch...
This paper presents, with a live field experiment, the potential of increasing wind farm power genera...
As wind turbines increase in size, combined with increased lifetime demands, new methods for load re...
Inside wind farms, the wakes of upwind turbines result in a significant reduction in power productio...
The article considers the possibility of using hydrophobic coatings on the internal surfaces of main...
Active control is becoming more and more important for the wind energy community. If we compare the ...
Multi-rotor floating offshore wind turbines have been recently proposed as an innovative technology ...