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Intelligent Control Switching for Autonomous Vehicles based on Reinforcement Learning.

, , , and . IV, page 792-797. IEEE, (2022)

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TS-MPC for Autonomous Vehicle using a Learning Approach., , , and . CoRR, (2020)Sufficient Conditions for Convergent Recursive Extrapolation of qLPV Scheduling Parameters Along a Prediction Horizon., , and . IEEE Trans. Autom. Control., 68 (6): 3182-3193 (June 2023)Road adaptive semi-active suspension and cruise control through LPV technique., , , and . ECC, page 461-466. IEEE, (2021)Nonsingular Terminal Sliding-mode Lateral Control of an Autonomous Vehicle with Global Fixed-time Stability Guarantees., and . ECC, page 1-6. IEEE, (2023)Performance specifications and analysis of a variable speed synchronous generator with a diode rectifier for the All Electric aircraft using the H∞ control approach., , , and . ECC, page 2917-2922. IEEE, (2009)Full vehicle dynamics control based on LPV/ℋ∞ and flatness approaches., , , , and . ECC, page 2346-2351. IEEE, (2014)Control of delayed recycling systems with an unstable pole at forward path., , and . ACC, page 5658-5663. IEEE, (2012)A new LPV/ℋ∞ semi-active suspension control strategy with performance adaptation to roll behavior based on non linear algebraic road profile estimation., , , , and . CDC, page 3511-3516. IEEE, (2013)Integrated adaptive velocity and semi-active suspension control for different road profiles., , , and . MED, page 933-938. IEEE, (2022)LPV-Fuzzy control approach for road adaptive semi-active suspension system., , , and . IV, page 779-784. IEEE, (2022)