In this paper and its companion, the identification of mathematical models describing the behaviour of wave energy devices (WECs) in the ocean is investigated through the use of numerical wave tank experiments. When the wave amplitude and the WEC displacement are not negligible with respect to the WEC dimensions, nonlinear hydrodynamic effects may appear, and the accuracy of linear hydrodynamic models is reduced, leading to the necessity of introducing some nonlinearities in the model structure. This paper proposes, for WEC modelling, the use of discrete-time nonlinear autoregressive with exogenous input (NARX) models, as an alternative to continuous-time models. Techniques of model identification are also explained and applied to a case st...
The International Energy Agency Technology Collaboration Programme for Ocean Energy Systems (OES) in...
Hydrodynamic models are important for the design and control of wave energy converters. Tradi...
System identification (SI) techniques represent an alternative strategy to provide the hydrodynamic ...
In this paper and its companion, the identification of mathematical models describing the behaviour ...
In this paper and its companion, the identification of mathematical models describing the behaviour ...
Hydrodynamic models are important for the design, simulation and control of wave energy converters ...
While linear and nonlinear system identification is a well established field in the control system ...
The modelling approach presented in this chapter is that of system identification, where models are ...
Ocean waves represent an important resource of renewable energy, which can provide a significant su...
The wave energy sector has made and is still doing a great effort in order to open up a niche in the...
System identification (SI) techniques represent an alternative strategy to provide the hydrodynamic ...
The motion response of marine structures in waves can be studied using finite-dimensional linear-tim...
Effective modelling of Wave Energy Converters (WEC) is fundamental in the design and implementation...
The International Energy Agency Technology Collaboration Programme for Ocean Energy Systems (OES) in...
Hydrodynamic models are important for the design and control of wave energy converters. Tradi...
System identification (SI) techniques represent an alternative strategy to provide the hydrodynamic ...
In this paper and its companion, the identification of mathematical models describing the behaviour ...
In this paper and its companion, the identification of mathematical models describing the behaviour ...
Hydrodynamic models are important for the design, simulation and control of wave energy converters ...
While linear and nonlinear system identification is a well established field in the control system ...
The modelling approach presented in this chapter is that of system identification, where models are ...
Ocean waves represent an important resource of renewable energy, which can provide a significant su...
The wave energy sector has made and is still doing a great effort in order to open up a niche in the...
System identification (SI) techniques represent an alternative strategy to provide the hydrodynamic ...
The motion response of marine structures in waves can be studied using finite-dimensional linear-tim...
Effective modelling of Wave Energy Converters (WEC) is fundamental in the design and implementation...
The International Energy Agency Technology Collaboration Programme for Ocean Energy Systems (OES) in...
Hydrodynamic models are important for the design and control of wave energy converters. Tradi...
System identification (SI) techniques represent an alternative strategy to provide the hydrodynamic ...