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Wake redirection for active power control : a realistic case study

, , , , and . The Science of Making Torque from Wind (TORQUE 2020), 1618, 2, page 022059. Institute of Physics Publishing, (2020)
DOI: 10.1088/1742-6596/1618/2/022059

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Lidar-assisted wake redirection control. Universität Stuttgart, München, Dissertation, (2019)FAST model of the SWE-TripleSpar floating wind turbine platform for the DTU 10MW reference wind turbine, , , , and . Dataset, (2020)Related to: 1 Bak, C., Zahle, F., Bitsche, R., Kim, T., Yde, A., Henriksen, L., Hansen, M. H.Blasques, J., Gaunaa, M. Natarajan, A. (2013). The DTU 10-MW Reference Wind Turbine.Lidar-based closed-loop wake redirection in high-fidelity simulation, , , , and . Science Of Making Torque From Wind (TORQUE 2018), 1037, page 032016. Bristol, IOP Publishing, (2018)Nonlinear model predictive control of floating wind turbines with individual pitch control., , , , and . ACC, page 4434-4439. IEEE, (2014)The performance of two control strategies for floating wind turbines: lidar-assisted feedforward and multi-variable feedback, , , , , , and . Journal of Physics: Conference Series, 2626 (1): 012005 (November 2023)IEA Wind Task 32 : Best Practices for the Certification of Lidar-Assisted Control Applications, , , , and . Windeurope Conference 2018 Within the Global Wind Summit, 1102, page 012010. IOP Publishing, (2018)Wake redirection for active power control : a realistic case study, , , , and . The Science of Making Torque from Wind (TORQUE 2020), 1618, 2, page 022059. Institute of Physics Publishing, (2020)Three Dimensional Dynamic Model Based Wind Field Reconstruction from Lidar Data, , , and . Journal of Physics: Conference Series, (2014)Comparison of linear and nonlinear model predictive control of wind turbines using LIDAR., , , , , and . ACC, page 3742-3747. IEEE, (2014)Lidar-Based Wake Tracking for Closed-Loop Wind Farm Control, , and . Wind Energy Science, 2 (1): 257-267 (2017)