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An application of LiDAR in a double-sample forest inventory

机译:激光雷达在双样本森林清查中的应用

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Multireturn LiDAR data (2-m posting) were used in a double-sample forest inventory in central Idaho. Twenty-four 15-plot (0.2 ac) strips were established with a real-time Differential Global Positioning System. Tree dbh and height were measured on every 5th plot. Volume and basal area were computed for eight encountered species. LiDAR trees were selected with a focal max filter and height computed as the z-difference between interpolated canopy and DEM surfaces. LiDAR-derived trees/ac, height, and dbh had mean differences of -4.4 trees, -10.7 ft, and -1.01 in. from ground values. Four dbh-height models were fitted. Predicted dbh was used to compute LiDAR estimates of basal area and volume on 360 Phase I plots. Phase 2 LiDAR estimates on 60 plots were computed by randomly assigning heights to species classes using a 500-iteration Monte Carlo simulation. Regression estimators for Phase 2 ground and LiDAR ft(3) and ft(2) were computed by single and composite species. Phase 1 estimates were partitioned to obtain species volumes. The regression estimate of composite volume was partitioned by percent species distribution of trees, basal area, and volume. There was no statistical difference between individual and partitioned composite species estimates. Sampling error was +/-11.5% on a mean volume estimate of 1,246 ft(3)/ac with standard error +/-72.98 ft(3)/ac.
机译:爱达荷州中部的双样本森林清单中使用了多返回LiDAR数据(2-m发布)。利用实时差分全球定位系统建立了二十五个15线(0.2 ac)带。每5个图测量一次树的dbh和高度。计算了八个遇到的物种的体积和基础面积。选择LiDAR树并使用焦点最大滤波器,并将高度计算为插值冠层和DEM表面之间的z差。 LiDAR衍生的树木/ ac,高度和dbh与地面值的平均差为-4.4树木,-10.7英尺和-1.01英寸。安装了四个dbh高度模型。预测的dbh用于计算360阶段I图上的基础面积和体积的LiDAR估计值。通过使用500次迭代的蒙特卡洛模拟对物种类别随机分配高度来计算60个地块的第二阶段LiDAR估算值。通过单一物种和复合物种计算出第二阶段地面和LiDAR ft(3)和ft(2)的回归估计量。划分第一阶段的估算以获得物种数量。复合材料体积的回归估计值按树木的物种分布百分比,基础面积和体积划分。个体和分区复合物种估计之间没有统计差异。平均体积估计值为1,246 ft(3)/ ac,采样误差为+/- 11.5%,标准误差为+/- 72.98 ft(3)/ ac。

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