首页> 外文期刊>GIScience & remote sensing >Creating high-resolution bare-earth digital elevation models (DEMs) from stereo imagery in an area of densely vegetated deciduous forest using combinations of procedures designed for lidar point cloud filtering
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Creating high-resolution bare-earth digital elevation models (DEMs) from stereo imagery in an area of densely vegetated deciduous forest using combinations of procedures designed for lidar point cloud filtering

机译:使用为激光雷达点云滤波设计的程序组合,从茂密的落叶林区中的立体影像中创建高分辨率的地球数字高程模型(DEM)

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摘要

For areas of the world that do not have access to lidar, fine-scale digital elevation models (DEMs) can be photogrammetrically created using globally available high-spatial resolution stereo satellite imagery. The resultant DEM is best termed a digital surface model (DSM) because it includes heights of surface features. In densely vegetated conditions, this inclusion can limit its usefulness in applications requiring a bare-earth DEM. This study explores the use of techniques designed for filtering lidar point clouds to mitigate the elevation artifacts caused by above ground features, within the context of a case study of Prince William Forest Park, Virginia, USA. The influences of land cover and leaf-on vs. leaf-off conditions are investigated, and the accuracy of the raw photogrammetric DSM extracted from leaf-on imagery was between that of a lidar bare-earth DEM and the Shuttle Radar Topography Mission DEM. Although the filtered leaf-on photogrammetric DEM retains some artifacts of the vegetation canopy and may not be useful for some applications, filtering procedures significantly improved the accuracy of the modeled terrain. The accuracy of the DSM extracted in leaf-off conditions was comparable in most areas to the lidar bare-earth DEM and filtering procedures resulted in accuracy comparable of that to the lidar DEM.
机译:对于世界上无法使用激光雷达的区域,可以使用全球可用的高空间分辨率立体卫星图像,通过摄影测量创建精细比例的数字高程模型(DEM)。生成的DEM最好称为数字表面模型(DSM),因为它包含表面特征的高度。在茂密的植被条件下,这种夹杂物可能会限制其在需要裸露DEM的应用中的用途。这项研究在美国弗吉尼亚州威廉王子森林公园的案例研究中,探索了设计用于过滤激光雷达点云的技术的使用,以减轻由地面特征引起的高程伪影。研究了土地覆盖和叶上条件与叶下条件的影响,从叶上图像中提取的原始摄影测量DSM的精度在激光雷达裸露DEM和航天飞机雷达地形图任务DEM之间。尽管过滤后的摄影摄影DEM保留了植被冠层的某些伪影,可能对某些应用没有用,但是过滤过程极大地提高了建模地形的准确性。在大多数情况下,在叶状条件下提取的DSM的精度在很多方面与激光雷达裸露DEM相当,而过滤过程的精度与在激光雷达DEM相当。

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