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An Economic Model Predictive Control Approach for Load Mitigation on Multiple Tower Locations of Wind Turbines.

, , , , , and . CDC, page 2425-2430. IEEE, (2022)

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Nuclear norm-enhanced recursive subspace identification: Closed-loop estimation of rapid variations in system dynamics., and . ACC, page 936-941. IEEE, (2016)Model-based closed-loop wind farm control for power maximization using Bayesian optimization: a large eddy simulation study., , and . CCTA, page 284-289. IEEE, (2019)Feedforward control for wave disturbance rejection on floating offshore wind turbines., , , , , and . CoRR, (2020)Fast Adaptive Fault Accommodation in Floating Offshore Wind Turbines via Model-Based Fault Diagnosis and Subspace Predictive Repetitive Control., , , and . CoRR, (2020)Fault-Tolerant Individual Pitch Control of Floating Offshore Wind Turbines via Subspace Predictive Repetitive Control., , , , , and . CoRR, (2020)On the identification of LPV traffic flow model., , , and . ECC, page 1752-1757. IEEE, (2009)On the Importance of the Azimuth Offset in a Combined 1P and 2P SISO IPC Implementation for Wind Turbine Fatigue Load Reductions., and . ACC, page 3506-3511. IEEE, (2019)A Switching Thrust Tracking Controller for Load Constrained Wind Turbines., , , , and . ACC, page 4230-4235. IEEE, (2022)Integrating robust lidar-based feedforward with feedback control to enhance speed regulation of floating wind turbines., , , and . ACC, page 3070-3075. IEEE, (2015)Data-enabled predictive control with instrumental variables: the direct equivalence with subspace predictive control., , , , and . CDC, page 2111-2116. IEEE, (2022)