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EFFECTS OF THE INCIDENCE ANGLE AND SURFACE TYPE ON THE LIDAR INTENSITY VALUE

机译:入射角和表面类型对激光强度值的影响

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Light Detection and Ranging is an active system, that measures distance by emitting a laser beam to the ground surface and then receiving the reflected signal. The incident angle of the laser beam and the surface type, in addition to its range and atmospheric effects, affect the received signal. Recent studies have utilized the intensity information of airborne LiDAR data for classification. However, such information was not fully explored because these studies only employed single flight lines. Typical airborne LiDAR data consist of multiple flight lines with varying overlaps (40%-60%); this condition implies that a significant portion of the ground objects can be measured from two different viewing aspects (each from adjacent flight lines). The intensity measurements obtained from different viewing aspects can be utilized to exploit the bi-directional reflectance distribution function property of the ground surface for classification. We employed the Rahman-Pinty-Verstraete model to investigate the effects of incident angle and surface type on intensity data, which were obtained with an Optech ALTM Pegasus airborne laser scanner with 60% overlap.
机译:光检测和测距是一种主动系统,它通过向地面发射激光束然后接收反射信号来测量距离。激光束的入射角和表面类型,除了其范围和大气影响外,还会影响接收到的信号。最近的研究已经利用机载LiDAR数据的强度信息进行分类。但是,由于这些研究仅使用单条飞行路线,因此尚未充分探索此类信息。典型的机载LiDAR数据由重叠重叠(40%-60%)的多条飞行线组成;这种情况意味着可以从两个不同的视角(每个相邻的飞行路线)测量地面物体的很大一部分。从不同视角获得的强度测量结果可用于开发地表的双向反射率分布函数特性进行分类。我们使用Rahman-Pinty-Verstraete模型来研究入射角和表面类型对强度数据的影响,这些强度数据是使用重叠60%的Optech ALTM Pegasus机载激光扫描仪获得的。

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