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Detection of Fault Structures With Airborne LiDAR Point-cloud Data

机译:使用机载LIDAR点云数据检测故障结构

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The airborne LiDAR (Light Detection And Ranging) technology is a new type of aerial earth observation method which can be used to produce high-precision DEM (Digital Elevation Model) quickly and reflect ground surface information directly. Fault structure is one of the key forms of crustal movement, and its quantitative description is the key to the research of crustal movement. The airborne LiDAR point-cloud data is used to detect and extract fault structures automatically based on linear extension, elevation mutation and slope abnormal characteristics. Firstly, the LiDAR point-cloud data is processed to filter out buildings, vegetation and other non-surface information with the TIN (Triangulated Irregular Network) filtering method and Burman model calibration method. TIN and DEM are made from the processed data sequentially. Secondly, linear fault structures are extracted based on dual-threshold method. Finally, high-precision DOM (Digital Orthophoto Map) and other geological knowledge are used to check the accuracy of fault structure extraction. An experiment is carried out in Beiya Village of Yunnan Province, China. With LiDAR technology, results reveal that: the airborne LiDAR point-cloud data can be utilized to extract linear fault structures accurately and automatically, measure information such as height, width and slope of fault structures with high precision, and detect faults in areas with vegetation coverage effectively.
机译:空中激光雷达(光检测和测距)技术是一种新型的空中地球观测方法,可用于快速生产高精度DEM(数字高度模型)并直接反射地面信息。故障结构是地壳运动的关键形式之一,其定量描述是地壳运动研究的关键。空气传播的LIDAR点云数据用于基于线性扩展,高度突变和斜率异常特性自动检测和提取故障结构。首先,加工LIDAR点云数据以将建筑物,植被和其他非表面信息与TIN(三角不规则的不规则网络)过滤方法和Burman模型校准方法进行过滤。锡和DEM按顺序由处理的数据进行。其次,基于双阈值方法提取线性故障结构。最后,使用高精度DOM(数字顶部地图)和其他地质知识来检查故障结构提取的准确性。在中国云南省北美村进行了实验。利用LIDAR技术,结果表明:空气传播的LIDAR点云数据可用于精确且自动地提取线性故障结构,测量具有高精度的故障结构的高度,宽度和坡度等信息,并检测植被区域的故障覆盖有效。

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