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施工场地无人机精细化三维模型构建及土方测量
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Construction of Detailed 3D Model of Construction Site and Earthwork Survey Based on UAV
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    利用无人机倾斜摄影测量技术,获取工程施工场地多视图影像序列,利用基于运动恢复结构算法(Structure from Motion, SfM)和多视图立体匹配算法(Multi View Stereo, MVS)的多视影像密集匹配形成超高密度点云,采用布料模拟滤波(Cloth Simulation Filter, CSF)算法剔除植被及废弃建筑物点云,获取真实地面点云,基于基底设计模型计算出两期点云之间土方量,实现复杂土方工程智能化测量. 采用上述无人机方法,对长沙岳麓山脚两块建设用地进行土方快速测量及精度评估,得到5.384 6亿点/公顷的点云密度,土方计算结果相对于RTK-GNSS测量结果误差为2.8%,满足土方测量误差小于5%的要求,具有较好的应用前景及工程实用价值.

    Abstract:

    Using unmanned aerial vehicle (UAV) oblique photogrammetry technology, multi-view image sequences of engineering construction sites are obtained. Ultra-high-density point clouds are formed by dense matching of structure from motion (SfM) and multi-view stereo (MVS) algorithms. The cloth simulation filtering (CSF) algorithm is used to remove the point cloud of vegetation and abandoned buildings to obtain the real ground point cloud. The earthwork volume between the two-phase point clouds based on the base design model is calculated to realize the intelligent measurement of complex earthwork engineering. Using the above-mentioned UAV method, the rapid earthwork measurement and accuracy assessment of the two construction lands at the foot of Changsha Yuelu Mountain are carried out, and a point cloud density of 538.46 million points per hectare is obtained. The error of the earthwork calculation result relative to the RTK-GNSS measurement result is 2.8%, which satisfies the requirement that the earthwork measurement error is less than 5%. This method has a good application prospect and engineering value.

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余加勇 ?,尹东 ,刘宝麟 ,蒋望 ,杨宇驰 ,高文宇 .施工场地无人机精细化三维模型构建及土方测量[J].湖南大学学报:自然科学版,2023,(1):181~188

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  • 在线发布日期: 2023-02-16
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