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Detection of trees features from a forestry area using airborne LiDAR data

机译:使用机载LIDAR数据检测林业区域的树木特征

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The impact of anthropogenic actions on the environment and climate has recently increased the need to map the afforested areas. In this context, the three-dimensional (3D) measurement of vegetation structures plays an important role in having an efficient forest inventory and management. Nowadays, the airborne LiDAR (Light Detection And Ranging) system offers high horizontal resolution as well as vertical dimension information, making it possible to estimate both three-dimensional characteristics of individual trees and to identify the distribution of forest resources in the region. This study aims to present a processing approach for the determination of each tree’s position (X and Y location, as well as tree height) and its dimensions (crown diameter, area and volume) using geometrically accurate 3D point clouds (data sets were collected in a forested area in Arge? County, Romania). To a better understanding of the forest features and to explore the potential of remote sensing for such analysis, it was further exploited Digital Terrain Model (DTM), Digital Surface Model (DSM), and Canopy Height Model (CHM) derivation.
机译:人为动作对环境和气候的影响最近增加了映射植树征的需要。在这种情况下,植被结构的三维(3D)测量在具有有效的森林库存和管理方面起着重要作用。如今,空降激光雷达(光检测和测距)系统提供高水平分辨率以及垂直尺寸信息,使得可以估计各个树木的三维特征,并确定该区域森林资源的分布。本研究旨在介绍使用几何准确3D点云(COSCH Directs)的尺寸(x和y位置,树高)及其尺寸(皇冠直径,面积和体积)的处理方法(数据集被收集)阿吉的森林区域?罗马尼亚县)。为了更好地了解森林特征,并探索这种分析的遥感潜力,它进一步利用数字地形模型(DTM),数字表面模型(DSM)和冠层高度模型(CHM)推导。

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