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Nonlinear robust burn control in tokamaks with uncertainties in the fueling lines via Lyapunov redesign.

, and . ACC, page 3084-3089. IEEE, (2017)

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Central safety factor control in DIII-D using neutral beam injection and electron cyclotron launchers in zero input-torque scenarios., and . CCTA, page 1460-1465. IEEE, (2017)Robust Nonlinear Control of the Minimum Safety Factor in Tokamaks., and . CCTA, page 753-758. IEEE, (2021)Nonlinear Local Control of the Safety-Factor-Profile Gradient at Moving Spatial Locations in Tokamak Plasmas*., , and . ACC, page 1590-1595. IEEE, (2023)Safety factor profile control in tokamaks via feedback linearization., and . CDC, page 5668-5673. IEEE, (2016)Minimum Safety Factor Control in Tokamaks via Optimal Allocation of Spatially Moving Electron Cyclotron Current Drive*., , and . CDC, page 454-459. IEEE, (2021)Nonlinear robust burn control in tokamaks with uncertainties in the fueling lines via Lyapunov redesign., and . ACC, page 3084-3089. IEEE, (2017)Integrated Robust Control of Individual Scalar Variables in Tokamaks., and . CDC, page 3233-3238. IEEE, (2019)Nonlinear burn control in tokamaks using in-vessel coils., and . CCA, page 617-622. IEEE, (2016)Estimation of the Electron Temperature Profile in Tokamaks Using Analytical and Neural Network Models*., , and . ACC, page 278-283. IEEE, (2022)A Reference Governor for Plasma-Shape Control in Tokamaks., , , , and . CCTA, page 804-809. IEEE, (2023)