This paper presents a data-driven model reduction by moment-matching approach to construct control-oriented models for a point absorber device. The methodology chosen and developed generates models which are input-to-state linear, with any nonlinear behaviour confined to the output map. Such a map is the result of a data-driven approximation procedure, where the so-called moment of the point absorber system is estimated via a least-squares procedure. The resulting control-oriented model can inherently preserve steady-state properties of the target WEC system for a user-defined class of input signals of interest, with the computation only dependent upon a suitably defined set of input-output data
Energy-maximising controllers for wave energy devices are normally based on linear hydrodynamic dev...
Linear dynamics are virtually always assumed when designing optimal controllers for wave energy conv...
The motion of a Wave Energy Converter (WEC) can be described in terms of an integro-differential eq...
This paper presents a data-driven model reduction by moment-matching approach to construct control-o...
Abstract Wave energy converters (WECs) inherently require appropriate control system technology to ...
Given the relevance of control-oriented models in optimal control design for wave energy converters...
Following the sharp increase in the price of traditional fossil fuels, in combination with issues of...
This paper presents an integrated framework for the design of wave energy control systems, consider...
Wave Energy Converters (WECs) have to be controlled to ensure maximum energy extraction from waves w...
Motivated by the relevance of so-called nonlinear Froude–Krylov (FK) hydrodynamic effects in the acc...
This paper presents a realistic, nonlinear numerical open-source benchmark model for Wave Energy Co...
Linear dynamics are virtually always assumed when designing optimal controllers for wave energy conv...
Motivated by the relevance of so-called nonlinear Froude–Krylov (FK) hydrodynamic effects in the a...
This is an author's peer-reviewed final manuscript, as accepted by the publisher. The published arti...
The most accurate wave energy converter models for heaving point absorbers include nonlinearities, w...
Energy-maximising controllers for wave energy devices are normally based on linear hydrodynamic dev...
Linear dynamics are virtually always assumed when designing optimal controllers for wave energy conv...
The motion of a Wave Energy Converter (WEC) can be described in terms of an integro-differential eq...
This paper presents a data-driven model reduction by moment-matching approach to construct control-o...
Abstract Wave energy converters (WECs) inherently require appropriate control system technology to ...
Given the relevance of control-oriented models in optimal control design for wave energy converters...
Following the sharp increase in the price of traditional fossil fuels, in combination with issues of...
This paper presents an integrated framework for the design of wave energy control systems, consider...
Wave Energy Converters (WECs) have to be controlled to ensure maximum energy extraction from waves w...
Motivated by the relevance of so-called nonlinear Froude–Krylov (FK) hydrodynamic effects in the acc...
This paper presents a realistic, nonlinear numerical open-source benchmark model for Wave Energy Co...
Linear dynamics are virtually always assumed when designing optimal controllers for wave energy conv...
Motivated by the relevance of so-called nonlinear Froude–Krylov (FK) hydrodynamic effects in the a...
This is an author's peer-reviewed final manuscript, as accepted by the publisher. The published arti...
The most accurate wave energy converter models for heaving point absorbers include nonlinearities, w...
Energy-maximising controllers for wave energy devices are normally based on linear hydrodynamic dev...
Linear dynamics are virtually always assumed when designing optimal controllers for wave energy conv...
The motion of a Wave Energy Converter (WEC) can be described in terms of an integro-differential eq...