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Applicability of personal laser scanning in forestry inventory

机译:个人激光扫描在林业清单中的适用性

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摘要

Light Detection and Ranging (LiDAR) technology has been widely used in forestry surveys in the form of airborne laser scanning (ALS), terrestrial laser scanning (TLS), and mobile laser scanning (MLS). The acquisition of important basic tree parameters (e.g., diameter at breast height and tree position) in forest inventory did not solve the problem of low measurement efficiency or weak GNSS signal under the canopy. A personal laser scanning (PLS) device combined with SLAM technology provides an effective solution for forest inventory under complex conditions with its light weight and flexible mobility. This study proposes a new method for calculating the volume of a cylinder using point cloud data obtained by a PLS device by fitting to a polygonal cylinder to calculate the diameter of the trunk. The point cloud data of tree trunks of different thickness were modeled using different fitting methods. The rate of correct tree trunk detection was 93.3% and the total deviation of the estimations of tree diameter at breast height (DBH) was -1.26 cm. The root mean square errors (RMSEs) of the estimations of the extracted DBH and the tree position were 1.58 cm and 26 cm, respectively. The survey efficiency of the personal laser scanning (PLS) device was 30m2/min for each investigator, compared with 0.91m2/min for the field survey. The test demonstrated that the PLS device combined with the SLAM algorithm provides an efficient and convenient solution for forest inventory.
机译:光检测和测距(LiDAR)技术已经以机载激光扫描(ALS),陆地激光扫描(TLS)和移动激光扫描(MLS)的形式广泛用于林业调查。在森林资源中获取重要的基本树木参数(例如胸高和树木位置的直径)并不能解决冠层下测量效率低或GNSS信号弱的问题。结合了SLAM技术的个人激光扫描(PLS)设备以其轻巧和灵活的移动性为复杂条件下的森林清查提供了有效的解决方案。这项研究提出了一种新的方法,该方法使用PLS设备获得的点云数据拟合圆柱体的直径,从而计算圆柱体的体积。使用不同的拟合方法对不同厚度的树干的点云数据进行建模。正确的树干检测率为93.3%,在胸高(DBH)处树径估计的总偏差为-1.26 cm。提取的DBH和树位置的估计的均方根误差(RMSE)分别为1.58 cm和26 cm。每个调查人员的个人激光扫描(PLS)设备的调查效率为30m 2 / min,而现场调查的调查效率为0.91m 2 / min。该测试表明,PLS设备与SLAM算法相结合,为森林清查提供了高效便捷的解决方案。

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