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Autonomous driving based on accurate localization using multilayer LiDAR and dead reckoning., , , , , , , и . ITSC, стр. 1-6. IEEE, (2017)Stability analysis of tacit learning based on environmental signal accumulation., , , , , и . IROS, стр. 2613-2620. IEEE, (2012)Adaptability of Tacit Learning in Bipedal Locomotion., , и . IEEE Trans. Auton. Ment. Dev., 5 (2): 152-161 (2013)Autonomous predictive driving for blind intersections., , , , и . IROS, стр. 3452-3459. IEEE, (2017)Proactive driving modeling in blind intersections based on expert driver data., , , , и . Intelligent Vehicles Symposium, стр. 901-907. IEEE, (2017)Towards Predictive Driving through Blind Intersections., , , и . ITSC, стр. 716-722. IEEE, (2018)Evaluation of AR-HUD Interface During an Automated Intervention in Manual Driving., , , , , , и . IV, стр. 2158-2164. IEEE, (2020)Autonomous Control of Reaching Movement by 'Mobility' Measure., , , и . J. Robotics Mechatronics, 19 (4): 448-458 (2007)Robust localization using 3D NDT scan matching with experimentally determined uncertainty and road marker matching., , , , и . Intelligent Vehicles Symposium, стр. 1356-1363. IEEE, (2017)Analysis of Distraction and Driving Behavior Improvement Using a Driving Support Agent for Elderly and Non-Elderly Drivers on Public Roads**This research was in part supported by the Center of Innovation Program (Nagoya University COI; Mobility Innovation Center) of the Japan Science and Technology Agency., , , , , , и . IV, стр. 1029-1034. IEEE, (2020)