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LPV-based autonomous vehicle control using the results of big data analysis on lateral dynamics.

, , and . ACC, page 2250-2255. IEEE, (2020)

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Combined observer design for road vehicles using LPV-based and learning-based methods., , and . MED, page 1074-1079. IEEE, (2022)Cooperation Strategy for Optimal Motion of Aerial and Ground Vehicles., , , and . MED, page 19-24. IEEE, (2023)Handling of tire pressure variation in autonomous vehicles: an integrated estimation and control design approach., , , and . ACC, page 2244-2249. IEEE, (2020)LPV control for autonomous vehicles using a machine learning-based tire pressure estimation., , , , , and . MED, page 212-217. IEEE, (2020)Impact of big data on the design of MPC control for autonomous vehicles., , and . ECC, page 4154-4159. IEEE, (2019)Data-driven modeling and control design in a hierarchical structure for a variable-geometry suspension test bed., , and . CDC, page 5047-5052. IEEE, (2021)Study on a road surface estimation method based on big data analysis., , , , and . SACI, page 57-62. IEEE, (2019)Design of LPV control for autonomous vehicles using the contributions of big data analysis., , and . Int. J. Control, 95 (7): 1802-1813 (2022)Observer design with performance guarantees for vehicle control purposes via the integration of learning-based and LPV approaches., , , and . IV Workshops, page 122-127. IEEE, (2021)Combined LPV and ultra-local model-based control design approach for autonomous vehicles., , , , and . CDC, page 3303-3308. IEEE, (2022)