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Three-dimensional(3D)parametric measurements of individual gravels in the Gobi region using point cloud technique
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作者 JING Xiangyu HUANG Weiyi KAN Jiangming 《Journal of Arid Land》 SCIE CSCD 2024年第4期500-517,共18页
Gobi spans a large area of China,surpassing the combined expanse of mobile dunes and semi-fixed dunes.Its presence significantly influences the movement of sand and dust.However,the complex origins and diverse materia... Gobi spans a large area of China,surpassing the combined expanse of mobile dunes and semi-fixed dunes.Its presence significantly influences the movement of sand and dust.However,the complex origins and diverse materials constituting the Gobi result in notable differences in saltation processes across various Gobi surfaces.It is challenging to describe these processes according to a uniform morphology.Therefore,it becomes imperative to articulate surface characteristics through parameters such as the three-dimensional(3D)size and shape of gravel.Collecting morphology information for Gobi gravels is essential for studying its genesis and sand saltation.To enhance the efficiency and information yield of gravel parameter measurements,this study conducted field experiments in the Gobi region across Dunhuang City,Guazhou County,and Yumen City(administrated by Jiuquan City),Gansu Province,China in March 2023.A research framework and methodology for measuring 3D parameters of gravel using point cloud were developed,alongside improved calculation formulas for 3D parameters including gravel grain size,volume,flatness,roundness,sphericity,and equivalent grain size.Leveraging multi-view geometry technology for 3D reconstruction allowed for establishing an optimal data acquisition scheme characterized by high point cloud reconstruction efficiency and clear quality.Additionally,the proposed methodology incorporated point cloud clustering,segmentation,and filtering techniques to isolate individual gravel point clouds.Advanced point cloud algorithms,including the Oriented Bounding Box(OBB),point cloud slicing method,and point cloud triangulation,were then deployed to calculate the 3D parameters of individual gravels.These systematic processes allow precise and detailed characterization of individual gravels.For gravel grain size and volume,the correlation coefficients between point cloud and manual measurements all exceeded 0.9000,confirming the feasibility of the proposed methodology for measuring 3D parameters of individual gravels.The proposed workflow yields accurate calculations of relevant parameters for Gobi gravels,providing essential data support for subsequent studies on Gobi environments. 展开更多
关键词 Gobi gravels three-dimensional(3D)parameters point cloud 3D reconstruction random sample consensus(RANSAC)algorithm density-based Spatial Clustering of Applications with Noise(DBSCAN)
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密集杂波环境下基于KD树优化的DBR-RANSAC目标跟踪算法 被引量:4
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作者 孙藏安 连豪 +1 位作者 史小斌 同非 《现代雷达》 CSCD 北大核心 2021年第5期16-23,共8页
地面战场侦察雷达存在虚假目标多、真实目标难以区分等问题。为了降低复杂环境下密集杂波的影响,形成稳定航迹,并提高雷达数据处理的实时性,文中提出一种基于K维树优化的密度聚类随机采样一致性多目标跟踪算法,降低使用批处理进行航迹... 地面战场侦察雷达存在虚假目标多、真实目标难以区分等问题。为了降低复杂环境下密集杂波的影响,形成稳定航迹,并提高雷达数据处理的实时性,文中提出一种基于K维树优化的密度聚类随机采样一致性多目标跟踪算法,降低使用批处理进行航迹起始时对大量数据进行密度聚类带来的运算负担;同时,利用相控阵雷达的波位信息对数据关联过程进行优化。仿真和试验数据验证表明:文中提出的算法在密集杂波环境下可有效提高运算效率并保持较高的跟踪性能。 展开更多
关键词 密集杂波 K维树 密度聚类随机采样一致性 航迹起始 数据关联
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