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Driver Lane Change Intention Inference for Intelligent Vehicles: Framework, Survey, and Challenges.

, , , , , , , and . IEEE Trans. Vehicular Technology, 68 (5): 4377-4390 (2019)

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Multi-Criteria Evaluation for Sorting Motion Planner Alternatives., , , , , and . Sensors, 22 (14): 5177 (2022)Minimisation of Motion Sickness in Autonomous Vehicles., , , , and . IV, page 1135-1140. IEEE, (2020)Haptic Steering Support for Driving Near the Vehicle's Handling Limits: Test-Track Case., , , and . IEEE Trans. Intell. Transp. Syst., 15 (4): 1781-1789 (2014)Minimization of steering corruption during front axle torque vectoring., , and . ECC, page 673-678. IEEE, (2018)Driver's Arms' Time-Variant Neuromuscular Admittance During Real Car Test-Track Driving., , , , and . IEEE Trans. Instrum. Meas., 63 (1): 221-230 (2014)Fundamentals of Motion Planning for Mitigating Motion Sickness in Automated Vehicles., , , , and . IEEE Trans. Veh. Technol., 71 (3): 2375-2384 (2022)Driver Activity Recognition for Intelligent Vehicles: A Deep Learning Approach., , , , , and . IEEE Trans. Vehicular Technology, 68 (6): 5379-5390 (2019)On steady-state cornering equilibria for wheeled vehicles with drift., , and . CDC, page 3545-3550. IEEE, (2009)Electric rear axle torque vectoring for combined yaw stability and velocity control near the limit of handling., , and . CDC, page 1552-1557. IEEE, (2013)Advances in Vision-Based Lane Detection: Algorithms, Integration, Assessment, and Perspectives on ACP-Based Parallel Vision., , , , , , , and . IEEE CAA J. Autom. Sinica, 5 (3): 645-661 (2018)