Model of the Correlation between Lidar Systems and Wind Turbines for Lidar-Assisted Control

Author:

Schlipf David1,Cheng Po Wen1,Mann Jakob2

Affiliation:

1. Stuttgart Wind Energy, Universität Stuttgart, Stuttgart, Germany

2. DTU Wind Energy, Technical University of Denmark, Risø Campus, Denmark

Abstract

Abstract Investigations of lidar-assisted control to optimize the energy yield and to reduce loads of wind turbines have increased significantly in recent years. For this kind of control, it is crucial to know the correlation between the rotor effective wind speed and the wind preview provided by a nacelle- or spinner-based lidar system. If on the one hand, the assumed correlation is overestimated, then the uncorrelated frequencies of the preview will cause unnecessary control action, inducing undesired loads. On the other hand, the benefits of the lidar-assisted controller will not be fully exhausted, if correlated frequencies are filtered out. To avoid these miscalculations, this work presents a method to model the correlation between lidar systems and wind turbines using Kaimal wind spectra. The derived model accounts for different measurement configurations and spatial averaging of the lidar system, different rotor sizes, and wind evolution. The method is compared to real measurement data with promising results. In addition, examples depict how this model can be used to design an optimal controller and how the configuration of a lidar system is optimized for a given turbine to improve the correlation.

Publisher

American Meteorological Society

Subject

Atmospheric Science,Ocean Engineering

Reference28 articles.

1. Estimation of the turbulence energy dissipation rate from the pulsed Doppler lidar data;Banakh;Atmos. Oceanic Opt.,1997

2. Henriksen, L. C. , 2011: Model predictive control of wind turbines. Ph.D. thesis, Technical University of Denmark, 132 pp.

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