一种基于无人机激光扫描点云的变电站设备提取方法

W. Yu, J. Xi, Z. Wu, W. Lei, C. Zhu, T. Tang
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摘要

摘要智能电网建设对变电站三维模型的构建提出了更高的要求。然而,由于变电站设施结构复杂多样,从大量的激光点云中提取变电站设施的精细三维结构仍然是一个挑战。为了解决这一问题,本文提出了一种从激光扫描点云中提取变电设备的方法。首先,为了提高处理效率和降低噪声,采用规则体素网格采样方法对输入点云进行下采样;在此基础上,采用多尺度形态滤波算法将点云分割为地点和非地点。基于非地面点云数据,采用点云平面检测提取变电站区域。然后,针对过滤后的变电站点云数据,提出了一种基于点维特征的变电站设备三维多边形棱柱分割算法。最后,利用无人机激光扫描系统采集的变电站LiDAR点云数据对算法进行验证,并对检测结果与人工提取结果进行定性、定量对比分析。实验结果表明,该方法能够准确地从激光点云数据中提取变电站设备结构。结果与人工提取的结果一致,证明了该方法在变电站提取和电力系统三维建模应用中的巨大潜力。
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A METHOD FOR EXTRACTING SUBSTATION EQUIPMENT BASED ON UAV LASER SCANNING POINT CLOUDS
Abstract. Smart grid construction puts higher demands on the construction of 3D models of substations. However, duo to the complex and diverse structures of substation facilities, it is still a challenge to extract the fine three-dimensional structure of the substation facilities from the massive laser point clouds. To solve this problem, this paper proposes a method for extracting substation equipment from laser scanning point clouds. Firstly, in order to improve the processing efficiency and reduce the noises, the regular voxel grid sampling method is used to down-sample the input point cloud. Furthermore, the multi-scale morphological filtering algorithm is used to segment the point cloud into ground points and non-ground points. Based on the non-ground point cloud data, the substation region is extracted using plane detection in point clouds. Then, for the filtered substation point cloud data, a three-dimensional polygon prism segmentation algorithm based on point dimension feature is proposed to extract the substation equipment. Finally, the substation LiDAR point cloud data collected by the UAV laser scanning system is used to verify the algorithm, and the qualitative and quantitative comparison analysis between the detected results and the manually extracted results are carried out. The experimental results show that the proposed method can accurately extract the substation equipment structure from the laser point cloud data. The results are consistent with the manually extracted results, which demonstrate the great potential of the proposed method in substation extraction and power system 3D modelling applications.
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