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A COMPARITIVE STUDY USING GEOMETRIC AND VERTICAL PROFILE FEATURES DERIVED FROM AIRBORNE LIDAR FOR CLASSIFYING TREE GENERA

机译:使用从机载LIDAR进行分类树属的几何和垂直型材特征的比较研究

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We present a comparative study between two different approaches for tree genera classification using descriptors derived from tree geometry and those derived from the vertical profile analysis of LiDAR point data. The different methods provide two perspectives for processing LiDAR point clouds for tree genera identification. The geometric perspective analyzes individual tree crowns in relation to valuable information related to characteristics of clusters and line segments derived within crowns and overall tree shapes to highlight the spatial distribution of LiDAR points within the crown. Conversely, analyzing vertical profiles retrieves information about the point distributions with respect to height percentiles; this perspective emphasizes of the importance that point distributions at specific heights express, accommodating for the decreased point density with respect to depth of canopy penetration by LiDAR pulses. The targeted species include white birch, maple, oak, poplar, white pine and jack pine at a study site northeast of Sault Ste. Marie, Ontario, Canada.
机译:我们使用从树几何形状的描述符和从LIDAR点数据的垂直轮廓分析导出的描述符来介绍两种不同方法之间的比较研究。不同的方法提供了用于处理树属识别的激光雷达云的两个视角。几何透视图分析了各个树冠相对于与冠部和整体树形的集群和线段特征有关的有价值的信息,以突出冠内LiDAR点的空间分布。相反,分析垂直配置文件在高度百分比上检索有关点分布的信息;这个角度强调,在特定点的高度分布表达的重要性,容纳用于与由激光雷达脉冲相对于天篷穿透深度减小点密度。目标物种包括白桦树,枫树,橡木,杨树,白杉木和杰克松树在Sault Ste东北的一家学习网站。玛丽,安大略省,加拿大。

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