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Control of a tethered undersea kite energy system using a six degree of freedom model.

, , and . CDC, page 688-693. IEEE, (2015)

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Attitude tracking control of an Airborne Wind Energy system., , and . ECC, page 1510-1515. IEEE, (2015)Passivity-based Control of a Hydrokinetic Energy Kite with a Multi-element Tether., , and . ACC, page 3709-3714. IEEE, (2023)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)FEM-Aided Modeling and Control of a Tethered Hydrokinetic Energy Kite., , and . ACC, page 3703-3708. IEEE, (2023)Attitude tracking control of a GroundGen airborne wind energy system., , and . ACC, page 4095-4100. IEEE, (2016)Control of a tethered undersea kite energy system using a six degree of freedom model., , and . CDC, page 688-693. IEEE, (2015)Retrospective cost adaptive control for a ground tethered energy system., , , and . CDC/ECC, page 824-829. IEEE, (2011)Control of an airborne wind energy system using an aircraft dynamics model., , and . ACC, page 2389-2394. IEEE, (2015)Passivity based control of a Tethered Undersea Kite energy system., , and . ACC, page 4984-4989. IEEE, (2016)An auto-didactic multivariable estimation scheme for a coupled map lattice: convergence analysis modeling of cylinder wakes., , and . ACC, page 3816-3821. IEEE, (2003)