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Automated estimation of individual conifer tree height and crown diameter via two-dimensional spatial wavelet analysis of lidar data

机译:通过LIDAR数据的二维空间小波分析自动估计单个针叶树高度和冠直径

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摘要

We describe and evaluate a new analysis technique, spatial wavelet analysis (SWA), to automatically estimate the location, height, and crown diameter of individual trees within mixed conifer open canopy stands from light detection and ranging (lidar) data. Two-dimensional Mexican hat wavelets, over a range of likely tree crown diameters, were convolved with lidar canopy height models. Identification of local maxima within the resultant wavelet transformation image then allowed determination of the location, height, and crown diameters of individual trees. In this analysis, which focused solely on individual trees within open canopy forests, 30 trees incorporating seven dominant North American tree species were assessed. Two-dimensional (2D) wavelet-derived estimates were well correlated with field measures of tree height (r = 0.97) and crown diameter (r = 0.86). The 2D wavelet-derived estimates compared favorably with estimates derived using an established method that uses variable window filters (VWF) to estimate the same variables but relies on a priori knowledge of the tree height – crown diameter relationship. The 2D spatial wavelet analysis presented herein could potentially allow automated, large-scale, remote estimation of timber board feet, foliar biomass, canopy volume, and aboveground carbon, although further research testing the limitations of the method in a variety of forest types with increasing canopy closures is warranted.
机译:我们描述并评估了一种新的分析技术,空间小波分析(SWA),自动估计混合针叶树开放式遮阳板内各树的位置,高度和冠长,从光检测和测距(LIDAR)数据中脱颖而出。二维墨西哥帽小波在一系列可能的树冠直径上,与激光轨道高度模型卷积。识别所得小波变换图像内的局部最大值,然后允许确定各个树的位置,高度和冠状直径。在这种分析中,仅针对开放冠层林中的个体树木,评估了包含七种主导北美树种种类的30棵树。二维(2D)小波衍生的估计与树高度(r = 0.97)和冠直径(r = 0.86)的场测量良好相关。 2D小波衍生的估计与使用使用可变窗口滤波器(VWF)的建立方法估计相同的变量但依赖于树高度 - 冠直径关系的先验知识来比较估计。这里提出的2D空间小波分析可能允许木板脚,叶面生物量,冠层和地上碳的自动化,大规模,远程估计,尽管进一步研究了在各种森林类型中的局限性的增加,但增加了冠层闭包是有保证的。

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