Lidar-based wake tracking for closed-loop wind farm control
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy
Link
http://stacks.iop.org/1742-6596/753/i=5/a=052009/pdf
Reference9 articles.
1. Analysis of axial‐induction‐based wind plant control using an engineering and a high‐order wind plant model
2. Evaluating techniques for redirecting turbine wakes using SOWFA
3. Simulation comparison of wake mitigation control strategies for a two-turbine case
4. Wind plant power optimization through yaw control using a parametric model for wake effects-a CFD simulation study
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1. Wind tunnel studies of wind turbine yaw and speed control effects on the wake trajectory and thrust stabilization;Renewable Energy;2022-04
2. Dynamic wake tracking using a cost-effective LiDAR and Kalman filtering: Design, simulation and full-scale validation;Renewable Energy;2021-07
3. Wake position tracking using dynamic wake meandering model and rotor loads;Journal of Renewable and Sustainable Energy;2021-03
4. Surrogate Models for Wind Turbine Electrical Power and Fatigue Loads in Wind Farm;Energies;2020-12-02
5. Dynamic wake tracking and characteristics estimation using a cost-effective LiDAR;Journal of Physics: Conference Series;2020-09-01
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