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A simple technique for co-registration of terrestrial LiDAR observations for forestry applications

机译:一种用于林业应用的地面LiDAR观测值共配准的简单技术

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摘要

Light detection and ranging (LiDAR) from terrestrial platforms provides unprecedented detail about the three-dimensional structure of forest canopies. Although airborne laser scanning is designed to yield a relatively homogeneous distribution of returns, the radial perspective of terrestrial laser scanning (TLS) results in a rapid decrease of number of returns with increasing distance from the instrument. Additionally, when used in forested environments, significant parts of the area under investigation may be obscured by tree trunks and understorey. A possible approach to mitigate this effect is to combine TLS observations acquired at different locations to obtain multiple perspectives of an area under investigation. The denser and more evenly distributed observations then allow a spatially explicit and more comprehensive study of forest characteristics. This study demonstrates a simple approach to combine TLS observations made at multiple locations using bright reference targets as tie-points. Results show this technique was able to accurately combine the different TLS data sets (root mean square error (RMSE): 0.04-0.7 m, coefficient of determination (R~2): 0.70-0.99). Terrain elevations from TLS system were highly correlated with field-measured terrain heights (R~2: 0.70-0.98).
机译:来自地面平台的光检测和测距(LiDAR)提供了有关森林冠层三维结构的前所未有的细节。尽管机载激光扫描被设计为产生相对均匀的回波分布,但地面激光扫描(TLS)的径向透视会导致回波数量随着与仪器距离的增加而迅速减少。此外,在森林环境中使用时,被调查区域的大部分地区可能会被树干和地下层遮盖。减轻这种影响的一种可能方法是将在不同位置获取的TLS观测值结合起来,以获得被调查区域的多个视角。然后,更密集,分布更均匀的观测值可以在空间上更明确,更全面地研究森林特征。这项研究展示了一种简单的方法,可以使用明亮的参考目标作为结合点来组合在多个位置进行的TLS观测。结果表明,该技术能够准确地组合不同的TLS数据集(均方根误差(RMSE):0.04-0.7 m,确定系数(R〜2):0.70-0.99)。 TLS系统的地形高程与现场测量的地形高度高度相关(R〜2:0.70-0.98)。

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  • 来源
    《Remote sensing letters》 |2012年第5期|p.239-247|共9页
  • 作者单位

    Faculty of Forest Resources Management, University of British Columbia, Vancouver,BCV6T1Z4, Canada;

    Faculty of Forest Resources Management, University of British Columbia, Vancouver,BCV6T1Z4, Canada;

    CSIRO Sustainable Ecosystems, Clayton South, VIC 3169, Australia;

    CSIRO Sustainable Ecosystems, Clayton South, VIC 3169, Australia;

    Canadian Forest Service (Pacific Forestry Centre), Natural Resources Canada, Victoria,BC V8Z 1M5, Canada;

    Canadian Forest Service (Pacific Forestry Centre), Natural Resources Canada, Victoria,BC V8Z 1M5, Canada;

    CSIRO Sustainable Ecosystems, Clayton South, VIC 3169, Australia;

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