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TLCFuse: Temporal Multi-Modality Fusion Towards Occlusion-Aware Semantic Segmentation-Aided Motion Planning., , , , and . CoRR, (2023)LAPTNet: LiDAR-Aided Perspective Transform Network., , , , and . ICARCV, page 281-286. IEEE, (2022)Semantic Grid Estimation with a Hybrid Bayesian and Deep Neural Network Approach., , , , and . IROS, page 888-895. IEEE, (2018)GridTrack: Detection and Tracking of Multiple Objects in Dynamic Occupancy Grids., , , and . ICVS, volume 12899 of Lecture Notes in Computer Science, page 180-194. Springer, (2021)Towards Human-Like Prediction and Decision-Making for Automated Vehicles in Highway Scenarios. (Vers une prédiction et une prise de décision inspirées de celles des humains pour la conduite automatisée de véhicules sur autoroute).. Grenoble Alpes University, France, (2019)LAPTNet-FPN: Multi-Scale LiDAR-Aided Projective Transform Network for Real Time Semantic Grid Prediction., , , , and . ICRA, page 712-718. IEEE, (2023)TransFuseGrid: Transformer-based Lidar-RGB fusion for semantic grid prediction., , , , , , and . ICARCV, page 268-273. IEEE, (2022)GndNet: Fast Ground Plane Estimation and Point Cloud Segmentation for Autonomous Vehicles., , , and . IROS, page 2150-2156. IEEE, (2020)Frustum-PointPillars: A Multi-Stage Approach for 3D Object Detection using RGB Camera and LiDAR., , , and . ICCVW, page 2926-2933. IEEE, (2021)Human-Like Decision-Making for Automated Driving in Highways., , , and . ITSC, page 2087-2094. IEEE, (2019)