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DEM Development from Ground-Based LiDAR Data:A Method to Remove Non-Surface Objects

机译:基于地面LiDAR数据的DEM开发:一种去除非表面物体的方法

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Topography and land cover characteristics can have significant effects on infiltration, runoff, and erosion processes on watersheds. The ability to model the timing and routing of surface water and erosion is affected by the resolution of the digital elevation model (DEM). High resolution ground-based Light Detecting and Ranging (LiDAR) technology can be used to collect detailed topographic and land cover characteristic data. In this study, a method was developed to remove vegetation from ground-based LiDAR data to create high resolution DEMs. Research was conducted on intensively studied rainfall–runoff plots on the USDA-ARS Walnut Gulch Experimental Watershed in Southeast Arizona. LiDAR data were used to generate 1 cm resolution digital surface models (DSM) for 5 plots. DSMs created directly from LiDAR data contain non-surface objects such as vegetation cover. A vegetation removal method was developed which used a slope threshold and a focal mean filter method to remove vegetation and create bare earth DEMs. The method was validated on a synthetic plot, where rocks and vegetation were added incrementally. Results of the validation showed a vertical error of ±7.5 mm in the final DEM.
机译:地形和土地覆盖特征可能对流域的入渗,径流和侵蚀过程产生重大影响。数字高程模型(DEM)的分辨率会影响对地表水和侵蚀的时间和路线进行建模的能力。高分辨率的地面光检测和测距(LiDAR)技术可用于收集详细的地形和土地覆盖特征数据。在这项研究中,开发了一种从地面LiDAR数据中删除植被以创建高分辨率DEM的方法。在亚利桑那州东南部的USDA-ARS核桃峡谷实验流域上对降雨径流图进行了深入研究。 LiDAR数据用于生成5个图的1 cm分辨率数字表面模型(DSM)。直接从LiDAR数据创建的DSM包含非表面对象,例如植被覆盖。开发了一种植被去除方法,该方法使用坡度阈值和焦均值滤波方法去除植被并创建裸露的DEM。该方法在合成地块上得到了验证,该地块逐渐增加了岩石和植被。验证结果显示最终DEM中的垂直误差为±7.5 mm。

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