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Iterative learning-based waypoint optimization for repetitive path planning, with application to airborne wind energy systems.

, , , and . CDC, page 2698-2704. IEEE, (2017)

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Electricity in the air: Insights from two decades of advanced control research and experimental flight testing of airborne wind energy systems., , , , , , , , , and 1 other author(s). Annu. Rev. Control., (2021)Optimal Cyclic Control of an Ocean Kite System in a Spatiotemporally Varying Flow Environment., , , , , and . ACC, page 596-601. IEEE, (2021)Iterative learning-based waypoint optimization for repetitive path planning, with application to airborne wind energy systems., , , and . CDC, page 2698-2704. IEEE, (2017)Flexible-Time Economic Iterative Learning Control: A Case Study in Airborne Wind Energy., , , and . CDC, page 5580-5586. IEEE, (2019)Iterative Learning-Based Path Optimization for Repetitive Path Planning, With Application to 3-D Crosswind Flight of Airborne Wind Energy Systems., , , and . IEEE Trans. Control. Syst. Technol., 28 (4): 1447-1459 (2020)Iterative Learning-Based Path Optimization With Application to Marine Hydrokinetic Energy Systems., , , , , , , and . IEEE Trans. Control. Syst. Technol., 30 (2): 639-653 (2022)A Flexible-Time Iterative Learning Control Framework for Linear, Time-Based Performance Objectives., , , and . ACC, page 4792-4797. IEEE, (2020)Receding Horizon Iterative Learning Control for Continuously Operated Systems., , , , , and . CoRR, (2021)Flexible-Time Receding Horizon Iterative Learning Control With Application to Marine Hydrokinetic Energy Systems., , , , , and . IEEE Trans. Control. Syst. Technol., 30 (6): 2767-2774 (2022)An Iterative Learning Approach for Online Flight Path Optimization for Tethered Energy Systems Undergoing Cyclic Spooling Motion., , , and . ACC, page 2164-2170. IEEE, (2019)