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STUDYING CANOPY STRUCTURE THROUGH 3-D RECONSTRUCTION OF POINT CLOUDS FROM FULL-WAVEFORM TERRESTRIAL LIDAR

机译:从全波形地面激光雷达三维点云重建冠层结构

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This study presents a three-dimensional (3-D) forest reconstruction methodology using the new and emerging science of terrestrial full-waveform lidar scanning, which can provide rapid and efficient measurements of canopy structure. A 3-D forest reconstruction provides a new pathway to estimate forest structural parameters such as tree diameter at breast height, tree height, crown diameter, and stem count density (trees per hectare). It enables the study of the detailed structure study with respect to the canopy (foliage or branch/trunk), as well as the generation of a digital elevation model (DEM) and a canopy height model (CHM) at the stand level. Leaf area index (LAI) and Foliage area volume density profile directly estimated from voxelized 3-D reconstruction agree with measurements from field and airborne instrument. A 3-D forest reconstruction allows virtual direct representation of forest structure, and provides consistent and reliable validation data sources for airborne or spaceborne data.
机译:本研究介绍了一种三维(3-D)林重建方法,采用新的和新兴科学的陆地全波形激光扫描扫描,可以提供快速有效地测量冠层结构。三维森林重建提供了一种新的途径来估计森林结构参数,如胸部高度,树高,冠直径和茎数密度(每公顷树木)。它能够研究关于树冠(树叶或分支/行李箱)的详细结构研究,以及在立式水平处产生数字高度模型(DEM)和天篷高度模型(CHM)的产生。叶面积指数(LAI)和叶片区域体积密度曲线直接估计,Voxized 3-D重建与场和空气仪器的测量结果一致。 3-D林重建允许虚拟直接表示森林结构,为空中或空间传播数据提供一致且可靠的验证数据源。

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