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Research of pedestrian detection for intelligent vehicle based on machine vision.

, , , , and . ROBIO, page 1172-1177. IEEE, (2009)

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Research of pedestrian detection for intelligent vehicle based on machine vision., , , , and . ROBIO, page 1172-1177. IEEE, (2009)Torque distribution for electric vehicle with four in-wheel motors by considering energy optimization and dynamics performance., , , , , and . Intelligent Vehicles Symposium, page 1619-1624. IEEE, (2017)Trajectory planning and robust tracking control for a class of active articulated tractor-trailer vehicle with on-axle structure., , , and . Eur. J. Control, (2020)How Resource Demands of Nondriving-Related Tasks and Engagement Time Affect Drivers' Physiological Response and Takeover Performance in Conditional Automated Driving., , , and . IEEE Trans. Hum. Mach. Syst., 53 (3): 600-609 (2023)Trajectory planning and tracking control for autonomous lane change maneuver based on the cooperative vehicle infrastructure system., , , , , and . Expert Syst. Appl., 42 (14): 5932-5946 (2015)RBFNN based terminal sliding mode adaptive control for electric ground vehicles after tire blowout on expressway., , , and . Appl. Soft Comput., (2020)LightMOT: a lightweight convolution neural network for real-time multi-object tracking., , , , and . Int. J. Bio Inspired Comput., 22 (3): 152-161 (2023)Stereo Vision Based Obstacle Avoidance Path-Planning for Cross-Country Intelligent Vehicle., , , and . FSKD (5), page 463-467. IEEE Computer Society, (2009)Compression of Vehicle and Pedestrian Detection Network Based on YOLOv3 Model., , and . IEICE Trans. Inf. Syst., 106 (5): 735-745 (May 2023)Multi-Object Trajectory Prediction Based on Lane Information and Generative Adversarial Network., , and . Sensors, 24 (4): 1280 (February 2024)