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Altitude optimization of Airborne Wind Energy systems: A Bayesian Optimization approach.

, and . ACC, page 1365-1370. IEEE, (2017)

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Predictive Control Allocation for a Thermal Management System Based on an Inner Loop Reference Model - Design, Analysis, and Experimental Results., , and . IEEE Trans. Control. Syst. Technol., 19 (4): 772-781 (2011)Modeling, Control Design, and Combined Plant/Controller Optimization for an Energy-Harvesting Tethered Wing., , and . IEEE Trans. Control. Syst. Technol., 26 (4): 1157-1169 (2018)Model predictive control allocation for overactuated systems - stability and performance., , and . CDC, page 1251-1256. IEEE, (2007)Performance enhancement of modular control systems using µ synthesis., , and . CDC, page 327-332. IEEE, (2008)Modeling, Control Design, and Experimental Validation of an Overactuated Thermal Management System for Engine Dynamometer Applications., , and . IEEE Trans. Control. Syst. Technol., 17 (3): 540-551 (2009)On Wind Speed Sensor Configurations and Altitude Control in Airborne Wind Energy Systems., , , and . ACC, page 2197-2202. IEEE, (2019)Control of a Relocatable Energy-Harvesting Autonomous Underwater Vehicle in a Spatiotemporally-Varying Gulf Stream Resource., , , and . ACC, page 2575-2580. IEEE, (2018)Spatiotemporal Optimization Through Gaussian Process-Based Model Predictive Control: A Case Study in Airborne Wind Energy., , , and . IEEE Trans. Contr. Sys. Techn., 27 (2): 798-805 (2019)Combined plant and controller performance analysis and optimization for an energy-harvesting tethered wing., , and . ACC, page 4089-4094. IEEE, (2016)On Wind Speed Sensor Configurations and Altitude Control in Airborne Wind Energy Systems., , , and . CoRR, (2020)