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Self-adapting part-based pedestrian detection using a fish-eye camera.

, , , and . Intelligent Vehicles Symposium, page 33-38. IEEE, (2017)

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Joint Calibration of Panoramic Camera and Lidar Based on Supervised Learning., , , , and . CoRR, (2017)Pedestrian Feature Generation in Fish-Eye Images via Adversary., , , and . ICRA, page 2007-2012. IEEE, (2018)Forehead or Headlights - At Which Height Should LiDARs be Mounted on the Vehicle?, , , and . IEEE Trans. Intell. Veh., 9 (1): 2564-2575 (January 2024)Spatial-Temporal-Rule-based Traffic Movement Status Interpretation at Intersections., , , , and . RCAR, page 876-881. IEEE, (2023)SAM4UDASS: When SAM Meets Unsupervised Domain Adaptive Semantic Segmentation in Intelligent Vehicles., , , , and . IEEE Trans. Intell. Veh., 9 (2): 3396-3408 (February 2024)TTC4MCP: Monocular Collision Prediction Based on Self-Supervised TTC Estimation., , , , , and . IROS, page 244-250. (2023)A Multi-Camera Vehicle Tracking System Based on City-Scale Vehicle Re-ID and Spatial-Temporal Information., , , and . CVPR Workshops, page 4077-4086. Computer Vision Foundation / IEEE, (2021)A Vision-based Pedestrian Comity Pre-Warning System., , , , , and . SPAC, page 385-391. IEEE, (2021)Monocular pedestrian orientation estimation based on deep 2D-3D feedforward., , and . Pattern Recognit., (2020)Oriented Spatial Transformer Network for Pedestrian Detection Using Fish-Eye Camera., , , , and . IEEE Trans. Multim., 22 (2): 421-431 (2020)