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首页> 外文期刊>Scandinavian Journal of Forest Research >Forest variable estimation using photogrammetric matching of digital aerial images in combination with a high-resolution DEM.
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Forest variable estimation using photogrammetric matching of digital aerial images in combination with a high-resolution DEM.

机译:使用数字航空影像的摄影测量匹配结合高分辨率DEM进行森林变量估计。

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摘要

The rapid development in aerial digital cameras in combination with the increased availability of high-resolution Digital Elevation Models (DEMs) provides a renaissance for photogrammetry in forest management planning. Tree height, stem volume, and basal area were estimated for forest stands using canopy height, density, and texture metrics derived from photogrammetric matching of digital aerial images and a high-resolution DEM. The study was conducted at a coniferous hemi-boreal site in southern Sweden. Three different data-sets of digital aerial images were used to test the effects of flight altitude and stereo overlap on an area-based estimation of forest variables. Metrics were calculated for 344 field plots (10 m radius) from point cloud data and used in regression analysis. Stand level accuracy was evaluated using leave-one-out cross validation of 24 stands. For these stands the tree height ranged from 4.8 to 26.9 m (17.8 m mean), stem volume 13.3 to 455 m3 ha-1 (250 m3 ha-1 mean), and basal area from 4.1 to 42.9 m2 ha-1 (27.1 m2 ha-1 mean) with mean stand size of 2.8 ha. The results showed small differences in estimation accuracy of forest variables between the data-sets. The data-set of digital aerial images corresponding to the standard acquisition of the Swedish National Land Survey (Lantmateriet), showed Root Mean Square Errors (in percent of the surveyed stand mean) of 8.8% for tree height, 13.1% for stem volume and 14.9% for basal area. The results imply that photogrammetric matching of digital aerial images has significant potential for operational use in forestry.
机译:航空数码相机的快速发展与高分辨率数字高程模型(DEM)可用性的提高相结合,为森林管理规划中的摄影测量学带来了复兴。使用数字航空影像的摄影测量匹配和高分辨率DEM得出的冠层高度,密度和纹理度量,估算林分的树高,茎量和基础面积。这项研究是在瑞典南部的一个针叶性半北方地区进行的。使用了三种不同的数字航空图像数据集来测试飞行高度和立体重叠对基于面积的森林变量估计的影响。根据点云数据计算了344个场图(半径10 m)的度量,并将其用于回归分析。使用24个支架的留一法交叉验证来评估支架水平的准确性。对于这些林分,树高为4.8至26.9 m(平均17.8 m),茎体积为13.3至455 m 3 ha -1 (250 m 3 < / sup> ha -1 平均值),基础面积从4.1到42.9 m 2 ha -1 (27.1 m 2 < / sup> ha -1 均值),平均林分面积为2.8公顷。结果表明,数据集之间的森林变量的估计准确性差异很小。与瑞典国家土地调查局(Lantmateriet)的标准采集相对应的数字航空图像数据集显示,树高,根茎体积和根茎均方根误差(占被调查林分平均值的百分比)分别为8.8%,13.1%和基础面积的14.9%。结果表明,数字航拍的摄影测量匹配在林业中具有可操作的巨大潜力。

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