Improved linearised models of wind turbine aerodynamics and control system dynamics using harmonic linearisation
Author:
Funder
EPSRC
GL Garrad Hassan
Publisher
Elsevier BV
Subject
Renewable Energy, Sustainability and the Environment
Reference27 articles.
1. Complex but Negligible: Non-linearity of the Inertial Coupling between the Platform and Blades of Floating Wind Turbines;Lupton;Renew. Energy,2019
2. Scaling of slow-drift motion with platform size and its importance for floating wind turbines;Lupton;Renew. Energy,2017
3. Dynamic Analysis of Both on and Offshore Wind Turbines in the Frequency Domain;Halfpenny,1998
4. A simple frequency-domain method for stress analysis of stall-regulated wind turbines: frequency-domain analysis of stall-regulated turbines;Merz;Wind Energy,2012
5. Frequency Domain Analysis of Offshore Wind Turbines, Technical Report;van Engelen,2004
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1. Simplified complex-valued modal model for operating wind turbines through aerodynamic decoupling and multi-blade coordinate transformation;Journal of Sound and Vibration;2023-03
2. An Open-Source Frequency-Domain Model for Floating Wind Turbine Design Optimization;Journal of Physics: Conference Series;2022-05-01
3. Efficient estimation of the nonlinear aerodynamic loads of floating offshore wind turbines under random waves and wind in frequency domain;Journal of Ocean Engineering and Marine Energy;2021-07-02
4. A new robust control scheme: Application for MPP tracking of a PMSG-based variable-speed wind turbine;Renewable Energy;2021-07
5. Harmonic linearisation of aerodynamic loads in a frequency‐domain model of a floating wind turbine;Wind Energy;2020-12-21
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