体素大小和点云密度对地面激光扫描杨树林冠盖度估算的影响

N. Puletti, M. Grotti, C. Ferrara, F. Chianucci
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引用次数: 4

摘要

准确估计林冠盖度(CC)对广泛的林业研究至关重要。由于不存在直接测量来检索该变量,因此CC通常从光学测量中确定,作为接近天顶的间隙分数的补。作为被动光学测量的替代方案,像光探测和测距(LiDAR)这样的主动传感器允许以前所未有的细节在现场描述3D树冠结构。我们评估了地面激光扫描(TLS)使用基于体素的方法估计CC的可靠性。具体来说,我们测试了不同体素大小(5-20 cm)和体素密度(1-9个点/dm 3)对CC检索的影响,并将结果与从DCP获得的基准值进行了比较。试验在意大利北部的杂交杨树种植园进行。结果表明,TLS可以用于获得准确的CC估计,但体素大小和点密度的选择是实现这种精度的关键。在杂交杨树中,体素大小为10 cm、点密度为8点/dm 3时表现最佳。测量和测绘CC的结合能力也具有利用TLS对较粗比尺遥感产品的结果进行校准和升级的巨大潜力。测量和测绘crown cover的结合能力也具有利用TLS数据对较粗比尺遥感产品的结果进行校准和升级的巨大潜力。
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Influence of voxel size and point cloud density on crown cover estimation in poplar plantations using terrestrial laser scanning
Accurate estimates of crown cover (CC) are central for a wide range of forestry studies. As direct measurements do not exist to retrieve this variable in the field, CC is conventionally determined from optical measurements as the complement of gap fraction close to the zenith. As an alternative to passive optical measurements, active sensors like Light Detection and Ranging (LiDAR) allows for characterizing in situ the 3D canopy structure with unprecedented detail. We evaluated the reliability of terrestrial laser scanning (TLS) to estimate CC using a voxel-based approach. Specifically, we tested how different voxel sizes (5-20 cm) and voxel densities (1-9 points/dm 3 ) influenced the retrieval of CC. Results were compared against benchmark values obtained from DCP. The trial was performed in hybrid poplar plantations in Northern Italy.  Results indicate that TLS can be used for obtaining accurate estimates of CC, but the choice of voxel size and point density is critical for achieving such accuracy. in hybrid poplars, the best performance was obtained using voxel size of 10 cm and point density of 8 points/dm 3 . The combined ability of measuring and mapping CC also holds great potential to use TLS for calibrating and upscaling results using coarser-scale remotely sensed products combined ability of measuring and mapping crown cover also holds great potential to use TLS data for calibrating and upscaling results using coarser-scale remotely sensed products.
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来源期刊
Annals of Silvicultural Research
Annals of Silvicultural Research Agricultural and Biological Sciences-Forestry
CiteScore
2.70
自引率
0.00%
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