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首页> 外文期刊>ISPRS Journal of Photogrammetry and Remote Sensing >The effect of short ground vegetation on terrestrial laser scans at a local scale
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The effect of short ground vegetation on terrestrial laser scans at a local scale

机译:短距离地面植被对当地规模的地面激光扫描的影响

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摘要

Terrestrial laser scanning (TLS) can record a large amount of accurate topographical information with a high spatial accuracy over a relatively short period of time. These features suggest it is a useful tool for topographical survey and surface deformation detection. However, the use of TLS to survey a terrain surface is still challenging in the presence of dense ground vegetation. The bare ground surface may not be illuminated due to signal occlusion caused by vegetation. This paper investigates vegetation-induced elevation error in TLS surveys at a local scale and its spatial pattern. An open, relatively flat area vegetated with dense grass was surveyed repeatedly under several scan conditions. A total station was used to establish an accurate representation of the bare ground surface. Local-highest-point and local-lowest-point filters were applied to the point clouds acquired for deriving vegetation height and vegetation-induced elevation error, respectively. The effects of various factors (for example, vegetation height, edge effects, incidence angle, scan resolution and location) on the error caused by vegetation are discussed. The results are of use in the planning and interpretation of TLS surveys of vegetated areas.
机译:陆地激光扫描(TLS)可以在相对较短的时间内以高空间精度记录大量准确的地形信息。这些特征表明它是用于地形测量和表面变形检测的有用工具。但是,在存在茂密的地面植被的情况下,使用TLS来测量地形表面仍然具有挑战性。由于植被造成的信号遮挡,裸露的地面可能不会被照亮。本文以局部尺度及其空间格局调查了TLS调查中植被引起的海拔误差。在数个扫描条件下,反复调查了一个空旷,相对平坦且植被茂密的区域。全站仪用于建立裸露地面的准确表示。将局部最高点滤镜和局部最低点滤镜应用于获取的点云,分别得出植被高度和植被引起的高程误差。讨论了各种因素(例如,植被高度,边缘效应,入射角,扫描分辨率和位置)对由植被引起的误差的影响。结果可用于规划和解释植被区的TLS调查。

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