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THE STUDY OF MOBILE LASER SCANNING DATA ADJUSTMENT RESULTS FOR LARGE SCALE TOPOGRAPHIC MAPPING

机译:大规模地形映射的移动激光扫描数据调整结果研究

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Mobile laser scanning (MLS) data are widely used for solving various tasks. To be sure that these data are appropriate for a specific task it is necessary to adjust data with a certain accuracy. Large scale topographic mapping is one from the tasks often solved by MLS data. Necessary accuracy of creating topographic plans is determined with a requirements document. Topographic plans are always created in a certain coordinate system. For this reason, MLS data should be previously transformed in the required one. For transformation control points measured with other more accurate methods should be applied. The quantity of necessary control points depends on a surveying area. For urban areas a lot of control points are required due to bad quality of GNSS signal. Much research has been conducted for these areas. For areas with open view of the sky it is required significantly fewer control points. Moreover, there are not so many vertical objects in areas with open view of the sky. Large errors can take place in the result of automatic adjustment of point cloud’s multi-passes. The results of both relative and absolute MLS data adjustment are given for the area with a good GNSS signal. The paper presents the results of accuracy estimation with different quantity of control points. The main goal of the paper is to determine the minimum number of control points for MLS data to be appropriate for creating topographic plans at a scale of 1:500 with a contour interval of 0.25 m.
机译:移动激光扫描(MLS)数据广泛用于解决各种任务。为了确保这些数据适用于特定任务,必须以具有一定准确度调整数据。大规模地形映射是来自MLS数据经常解决的任务之一。使用要求文件确定创建地形计划的必要准确性。始终在某个坐标系中创建地形计划。因此,MLS数据应该先前转换为所需的数据。对于应采用其他更准确的方法测量的转换控制点。必要控制点的数量取决于测量区域。对于城市地区,由于GNSS信号质量差,需要许多控制点。已经为这些领域进行了很多研究。对于天空的开放视图的区域,需要较少的控制点。而且,在天空的开放视图中,在区域中没有这么多的垂直物体。在点云的多通行证的自动调整的结果中可以发生大错误。具有良好GNSS信号的区域给出了相对和绝对MLS数据调整的结果。本文介绍了用不同数量的控制点精度估计的结果。本文的主要目的是确定MLS数据的最小控制点数,以适当地在1:500的范围内创建地形规划,轮廓间隔为0.25米。

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