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交通场景中基于双向感知和几何聚合的小目标检测
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作者 戴宇晨 刘石坚 邹峥 《陕西科技大学学报》 北大核心 2025年第4期192-201,共10页
交通场景的3D目标检测旨在通过点云数据对场景中的车辆和行人等进行识别,本文着重于提升小目标检测的性能.本文设计了全新的多模态特征编码方案:基于双向感受野融合的体素特征编码方法和基于局部几何聚合的点-体素特征混合编码方法.另外... 交通场景的3D目标检测旨在通过点云数据对场景中的车辆和行人等进行识别,本文着重于提升小目标检测的性能.本文设计了全新的多模态特征编码方案:基于双向感受野融合的体素特征编码方法和基于局部几何聚合的点-体素特征混合编码方法.另外,本文模块均针对两阶段模型的前期特征强化,提前规避细节错误;本文模块独立性强,可扩展到所有两阶段模型中.实验对比使用KITTI数据集的两阶段3D检测模型,结果显示本文方法在不同遮挡难度中,行人类对象和骑行类对象的准确率可分别实现3%和5%的显著提升.并且对比KITTI数据集行人类3D检测SOTA,本文方法在基本同步的时间延迟下,在其整体准确率提升的同时,小目标对象检测的准确率更高. 展开更多
关键词 3D目标检测 点-体素 感受野融合 几何聚合 小目标检测
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Automated extraction of expressway road surface from mobile laser scanning data 被引量:3
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作者 TRAN Thanh Ha TAWEEP Chaisomphob 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第7期1917-1938,共22页
This paper presents a voxel-based region growing method for automatic road surface extraction from mobile laser scanning point clouds in an expressway environment.The proposed method has three major steps:constructing... This paper presents a voxel-based region growing method for automatic road surface extraction from mobile laser scanning point clouds in an expressway environment.The proposed method has three major steps:constructing a voxel model;extracting the road surface points by employing the voxel-based segmentation algorithm;refining the road boundary using the curb-based segmentation algorithm.To evaluate the accuracy of the proposed method,the two-point cloud datasets of two typical test sites in an expressway environment consisting of flat and bumpy surfaces with a high slope were used.The proposed algorithm extracted the road surface successfully with high accuracy.There was an average recall of 99.5%,the precision was 96.3%,and the F1 score was 97.9%.From the extracted road surface,a framework for the estimation of road roughness was proposed.Good agreement was achieved when comparing the results of the road roughness map with the visual image,indicating the feasibility and effectiveness of the proposed framework. 展开更多
关键词 mobile laser scanning SEGMENTATION road surface EXPRESSWAY VOXELIZATION point cloud
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