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Rapid detection of stand density, tree positions, and tree diameter with a 2D terrestrial laser scanner

机译:使用2D地面激光扫描仪快速检测林分密度,树木位置和树木直径

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Harvester operators that decide about tree removal during thinnings have currently no instruments to measure stand density continuously before and after the operation. We tested whether basal area can be measured rapidly for this purpose with a 2D terrestrial laser scanner. An algorithm was developed, which automatically detects trees from laser scanner point clouds, measures their position and diameter, and calculates basal area. A field test included 18 laser scans in two Norway spruce stands witha wide range of stand densities, representing situations before and after thinning. Occlusion is a problem of single laser scans, and about one-third of the trees within the scanning range were not detected. Occlusion varies with stem density and branchiness. We therefore applied a flexible scanning range, which is detected automatically based on the laser hit density distribution for each scan. Scanning ranges were between 5.5 and 8.4 m (mean = 7.3 m) in the test scans, which is below the reach of theharvester crane, but still large enough to estimate local stand density. Basal area measured with the laser scanner was unbiased only in one of the two stands. Trees not detected or trees falsely detected caused only small bias of the basal area measurement in one of the two stands. Measurement errors for individual scans were, however, often around 10 m~2 ha~(-1).
机译:决定在间伐期间砍伐树木的收割机操作员目前没有仪器可以在作业前后连续测量林分密度。我们测试了是否可以使用2D地面激光扫描仪快速测量基底面积。开发了一种算法,该算法可自动从激光扫描仪点云中检测树木,测量其位置和直径,并计算基底面积。现场测试包括在两个挪威云杉机架中进行18次激光扫描,这些机架具有不同的机架密度,代表了稀疏前后的情况。遮挡是单次激光扫描的问题,并且未检测到扫描范围内约三分之一的树木。闭塞随茎密度和分支而变化。因此,我们应用了灵活的扫描范围,该范围是根据每次扫描的激光命中密度分布自动检测到的。在测试扫描中,扫描范围在5.5到8.4 m之间(平均= 7.3 m),虽然低于收割机的范围,但仍然足够大,可以估算局部林分密度。仅在两个支架之一中,用激光扫描仪测量的基础区域没有偏斜。未检测到的树木或错误检测到的树木仅在两个林分之一中引起了基础面积测量的较小偏差。但是,每次扫描的测量误差通常在10 m〜2 ha〜(-1)左右。

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