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Independent blade pitch controller design for a three-bladed turbine using disturbance accommodating control.

, , and . ACC, page 2301-2306. IEEE, (2016)

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FX-RLS-Based Feedforward Control for LIDAR-Enabled Wind Turbine Load Mitigation., , and . IEEE Trans. Contr. Sys. Techn., 20 (5): 1212-1222 (2012)Augmented adaptive control of a wind turbine in the presence of structural modes., , and . ACC, page 2760-2765. IEEE, (2010)Control of wind turbines: Past, present, and future., , and . ACC, page 2096-2103. IEEE, (2009)LPV subspace identification of the edgewise vibrational dynamics of a wind turbine rotor., , , and . CCA, page 37-42. IEEE, (2011)Validation of Individual Pitch Control by Field Tests on Two- and Three-Bladed Wind Turbines., , and . IEEE Trans. Contr. Sys. Techn., 21 (4): 1067-1078 (2013)Direct Speed Control using LIDAR and turbine data., , , , , , , and . ACC, page 2208-2213. IEEE, (2013)Comparison of Strategies for Enhancing Energy Capture and Reducing Loads Using LIDAR and Feedforward Control., , and . IEEE Trans. Contr. Sys. Techn., 21 (4): 1129-1142 (2013)Independent blade pitch controller design for a three-bladed turbine using disturbance accommodating control., , and . ACC, page 2301-2306. IEEE, (2016)Comprehensive management practices and policies performance model., , and . Ind. Manag. Data Syst., 116 (5): 1043-1060 (2016)Dynamics and control of horizontal axis wind turbines., , , and . ACC, page 3781-3793. IEEE, (2003)