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Using terrestrial laser scanner for estimating leaf areas of individual trees in a conifer forest

机译:使用陆地激光扫描仪估算针叶林中单棵树的叶子面积

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摘要

A method that applies the terrestrial laser scanning to estimate leaf areas of individual trees in a mature conifer forest is presented. It is based on the theory of conventional optical LAI determinations, but refined for the inclusion of 3D depth information from the laser scanner. For each objective tree, we first used a single scan to measure local gap fractions beyond determined crown depths and combined this scan with other scans to delineate the geometrical dimensions of the crown. Then, through integrating the information from both aspects, the local leaf area density and the corresponding volume were derived. Finally, the total leaf area was obtained as the scalar product of these two variables. As most procedures were implemented on segmented 2D range images, the method possesses high efficiency. Additionally, through using gap fraction beyond determined crown depths, it solved the zero gap fraction problem encountered in segmented hemispherical photograph analysis. The method was tested on 11 trees in a 39 years old Norway spruce (Picea abies [L.] Karst.) stand located in southern Bavaria, Germany. Through correlation of the results with the estimates obtained with allometric equations, the accuracy was validated. The influence of the crown depth, for measuring gap fraction, and the segment size on estimation were also analyzed.
机译:提出了一种方法,该方法适用于陆地激光扫描,以估计成熟的针叶林中单个树木的叶面积。它基于常规光学LAI确定的理论,但经过精炼以包含来自激光扫描仪的3D深度信息。对于每个目标树,我们首先使用一次扫描来测量超出确定冠深度的局部间隙分数,然后将此扫描与其他扫描组合以描绘冠的几何尺寸。然后,通过综合这两个方面的信息,得出局部叶面积密度和相应的体积。最后,获得的总叶面积是这两个变量的标量积。由于大多数程序都是在分割的2D范围图像上执行的,因此该方法具有很高的效率。此外,通过使用超出确定的冠部深度的间隙分数,它解决了分段半球照片分析中遇到的零间隙分数问题。该方法在位于德国巴伐利亚州南部39岁的挪威云杉(Picea abies [L.] Karst。)林中的11棵树上进行了测试。通过将结果与异速方程获得的估计值进行关联,可以验证准确性。还分析了冠部深度(用于测量间隙分数)和段大小对估计的影响。

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