Timely Fusion of Surround Radar/Lidar for Object Detection in Autonomous Driving Systems
专题命中 感知 :autonomous driving(title,abstract);LiDAR(title,abstract);分类 cs.CV、cs.AI
视觉与机器人
自动驾驶感知、规划、BEV、占用预测、激光雷达和仿真评测。
专题命中 感知 :autonomous driving(title,abstract);LiDAR(title,abstract);分类 cs.CV、cs.AI
专题命中 感知 :LiDAR(title,abstract);autonomous driving(title);self-driving(abstract);分类 cs.RO、cs.CV
Comments Published at IEEE European Control Conference 2024
专题命中 感知 :LiDAR(title,abstract);BEV(title);autonomous driving(abstract);分类 cs.CV、cs.AI
Comments 14 pages, 6 figures
专题命中 感知 :autonomous driving(title,abstract);LiDAR(title,abstract);分类 cs.RO、cs.CV
Comments Accepted by ICRA 2023
专题命中 感知 :autonomous driving(title,abstract);LiDAR(title,abstract);分类 cs.CV、cs.AI
Comments AAAI2023
专题命中 感知 :autonomous driving(title,abstract);BEV(title,abstract);分类 cs.RO、cs.CV
Comments Accepted for Oral Presentation at IEEE Intelligent Transportation Systems Conference (ITSC) 2021
Li-ViP3D++:基于查询的可变形相机-激光雷达融合用于端到端感知与轨迹预测
机构 * Karlsruhe Institute of Technology(卡尔斯鲁厄理工学院) ; Slovak University of Technology(斯洛伐克技术大学) ; Halmstad University(哈马比大学)
专题命中 感知 :LiDAR(title,abstract);BEV(abstract,abstract_cn);autonomous driving(abstract);分类 cs.RO、cs.CV、cs.AI
AI总结 Li-ViP3D++通过引入查询门控可变形融合技术,实现了端到端感知与轨迹预测,提升了自动驾驶系统的鲁棒性和效率。
Comments Published in IEEE Access. The version of record is available at DOI: 10.1109/ACCESS.2026.3709080
Journal ref IEEE Access, vol. 14, pp. 102999-103012, 2026
STELLAR: 为自动驾驶扩展3D感知大模型
机构 * Waymo ; UCSD(加州大学圣地亚哥分校)
专题命中 感知 :autonomous driving(title,abstract);LiDAR(abstract,abstract_cn);driving perception(abstract);分类 cs.RO、cs.CV、cs.AI
AI总结 本文研究了大规模训练在自动驾驶感知系统中的应用,通过扩展输入模态并训练大规模模型,实现了在Waymo数据集上的新状态-of-the-art性能。
专题命中 感知 :LiDAR(title,abstract);autonomous driving(abstract);BEV(abstract);driving perception(abstract)
Comments 8 pages
机构 * The State Key Laboratory of Automotive Safety and Energy, School of Vehicle and Mobility, Tsinghua University(汽车安全与能源国家重点实验室,车辆与移动系统学院,清华大学)
专题命中 感知 :autonomous driving(title,abstract);driving perception(title,abstract);分类 cs.AI
机构 * Faculty of Computer Science Nuremberg Institute of Technology(纽伦堡工业大学计算机科学学院)
专题命中 感知 :autonomous driving(title,abstract);LiDAR(title,abstract);分类 cs.CV
专题命中 感知 :autonomous driving(title,abstract);LiDAR(title,abstract);分类 cs.CV
专题命中 感知 :autonomous driving(title,abstract);LiDAR(title,abstract);分类 cs.CV
专题命中 感知 :LiDAR(title,abstract);occupancy(title,abstract);分类 cs.CV
Comments Preprint, Paper has been accepted at WACV2023
专题命中 感知 :autonomous driving(title,abstract);LiDAR(title,abstract);分类 cs.CV
Comments accepted by IROS 2021
专题命中 感知 :autonomous driving(title,abstract);LiDAR(title,abstract);分类 cs.CV
专题命中 感知 :autonomous driving(title,abstract);LiDAR(title,abstract);分类 cs.CV
Comments Accepted by CVPR 2019
专题命中 感知 :autonomous driving(title,abstract);LiDAR(title,abstract);分类 cs.CV
Comments Accepted to International Conference on Learning Representations (ICLR) 2020
专题命中 感知 :LiDAR(title,abstract);autonomous driving(title,comments);分类 cs.RO、cs.CV、eess.IV
Comments Accepted for Oral presentation at ICCV 2019 Workshop on Autonomous Driving. https://sites.google.com/view/fusemodnet
专题命中 感知 :autonomous driving(title,abstract);self-driving(abstract);LiDAR(abstract);driving perception(abstract)
Comments This paper has been published on ITSC'2021, please check the website of the PandaSet for more information: https://pandaset.org/
可解释性感知的视锥攻击:揭示基于LiDAR的3D目标检测器中的结构脆弱性
机构 * Imperial College London(帝国理工学院伦敦分校)
专题命中 感知 :LiDAR(title,title_cn);分类 cs.CV
AI总结 提出可解释性引导的对抗分析方法,通过SALL方法生成通用显著性图,并设计EFA攻击,仅扰动最关键的视锥区域,在KITTI和nuScenes上使检测召回率下降超15个百分点,同时减少25-50%的扰动视锥数。
Comments European Conference on Computer Vision (ECCV), September 2026
集成目标检测、LiDAR增强的深度估计和分割模型用于铁路环境
机构 * 1 Department of Excellence in Robotics \& AI, Scuola Superiore Sant'Anna, Pisa, Italy 2 Progress Rail Signaling S.p.A., Serravalle Pistoiese (PT), Italy
专题命中 感知 :LiDAR(title,title_cn);分类 cs.CV
AI总结 本文提出一个模块化框架,结合目标检测、轨道分割和单目深度估计,用于铁路环境中的障碍物检测与距离估计,通过合成数据集评估,实现0.63米的高精度距离估计。
Comments Under submission for publication
机构 * School of Electronic Information and Communications, Huazhong University of Science and Technology (HUST), Wuhan, China(华中科技大学电子信息与通信学院) ; School of Software Engineering, Huazhong University of Science and Technology (HUST), Wuhan, China(华中科技大学软件工程学院) ; Department of Computer Science, The University of Hong Kong, Hong Kong (HKU) SAR, China(香港大学计算机系) ; Baidu Inc., Beijing, China(百度公司)
专题命中 感知 :autonomous driving(title,abstract);BEV(abstract);LiDAR(abstract);occupancy(abstract)
专题命中 感知 :LiDAR(title,abstract);autonomous driving(abstract);BEV(abstract);occupancy(abstract)
Comments Accepted by IEEE Transactions on Intelligent Vehicles
专题命中 感知 :BEV(title,abstract);autonomous driving(abstract);LiDAR(abstract);occupancy(abstract)
专题命中 感知 :LiDAR(title,abstract);autonomous driving(abstract,journal_ref);BEV(abstract);分类 cs.RO、cs.CV、cs.AI
Comments 20 pages, 20 figures, 11 tables
Journal ref 2022 IEEE/CVF Conference on Computer Vision and Pattern Recognition (CVPR) Workshop on Autonomous Driving (WAD)
专题命中 感知 :autonomous driving(title);driving perception(title);LiDAR(abstract);分类 cs.CV、cs.AI
Comments This paper has been submitted to the journal Pattern Recognition Letters
专题命中 感知 :LiDAR(title,abstract);autonomous driving(title);分类 cs.RO、cs.CV
Comments Accepted at Workshop on Event Sensing and Neuromorphic Engineering - 8th International Conference on Event-based Control, Communication, and Signal Processing
专题命中 感知 :autonomous driving(title,abstract);driving perception(title);分类 cs.CV、cs.AI
Comments This work has been accepted for publication in IEEE Access
专题命中 感知 :LiDAR(title,abstract);autonomous driving(title);分类 cs.RO、cs.CV
Comments 8 pages, 6 figures
Journal ref IROS 2020