This paper deals with the development of a simplified, control-oriented mathematical model of an offshore variable speed wind turbine with tension leg platform. First, the model is derived with the goal of describing the most relevant physical phenomena of the turbine/platform dynamics, while limiting its complexity. The unknown model parameters are identified and a model validation phase is carried out using Fatigue, Aerodynamics, Structures, and Turbulence (FAST), an accurate reference model available in the literature. Then, an H∞ controller is designed for above-rated power operating conditions. The ability of the controller to attenuate the effect of wind variations and waves is tested in simulation both on thebreak small-scale simulat...
This paper summarises the tuning process of the Aerodynamic Platform Stabiliser control loop and its...
The experimental testing of a Tension Leg Platform (TLP) floating wind turbine at 1:60 scale in wind...
In this work, an Economic Model Predictive Controller for a floating offshore wind turbine is presen...
This paper deals with the development of a simplified, control-oriented mathematical model of an off...
In this paper, a simplified, control-oriented mathematical model of an offshore variable speed wind ...
As offshore wind technology advances, floating wind turbines are becoming larger and moving further ...
Offshore wind energy is expected to provide a significant contribution to the achievement of the Eur...
The design of control strategies for floating offshore wind turbines (FOWTs) is even more difficult ...
In order to tap the world wide offshore wind resources above deep waters, cost efficient floating pl...
The past few decades have seen an increasing interest toward wind energy since it has the potential ...
The vast deepwater wind resource represents a potential to use offshore floating wind turbines to po...
The paper presents an integrated modelling platform that can be used to assess the dynamic performan...
Due to the fast development of wind energy and exponential growing of installed wind turbines, the ...
This report presents results of the analysis of a 5-MW wind turbine located on a floating offshore t...
This paper summarises the tuning process of the Aerodynamic Platform Stabiliser control loop and its...
The experimental testing of a Tension Leg Platform (TLP) floating wind turbine at 1:60 scale in wind...
In this work, an Economic Model Predictive Controller for a floating offshore wind turbine is presen...
This paper deals with the development of a simplified, control-oriented mathematical model of an off...
In this paper, a simplified, control-oriented mathematical model of an offshore variable speed wind ...
As offshore wind technology advances, floating wind turbines are becoming larger and moving further ...
Offshore wind energy is expected to provide a significant contribution to the achievement of the Eur...
The design of control strategies for floating offshore wind turbines (FOWTs) is even more difficult ...
In order to tap the world wide offshore wind resources above deep waters, cost efficient floating pl...
The past few decades have seen an increasing interest toward wind energy since it has the potential ...
The vast deepwater wind resource represents a potential to use offshore floating wind turbines to po...
The paper presents an integrated modelling platform that can be used to assess the dynamic performan...
Due to the fast development of wind energy and exponential growing of installed wind turbines, the ...
This report presents results of the analysis of a 5-MW wind turbine located on a floating offshore t...
This paper summarises the tuning process of the Aerodynamic Platform Stabiliser control loop and its...
The experimental testing of a Tension Leg Platform (TLP) floating wind turbine at 1:60 scale in wind...
In this work, an Economic Model Predictive Controller for a floating offshore wind turbine is presen...