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首页> 外文期刊>Geomorphology >Retrieval of small-relief marsh morphology from Terrestrial Laser Scanner, optimal spatial filtering, and laser return intensity
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Retrieval of small-relief marsh morphology from Terrestrial Laser Scanner, optimal spatial filtering, and laser return intensity

机译:从地面激光扫描仪中检索小浮雕沼泽形态,最佳空间滤波和激光返回强度

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摘要

Marshes are ubiquitous landforms in estuaries and lagoons, where important hydrological, morphological and ecological processes take place. These areas attenuate sea action on the coast and act as sediment trapping zones. Due to their ecosystem functions and effects on coastal stabilization, marshes are crucial structures in tidal environments, both biologically and geomorphologically, and are fundamental elements in wetland restoration and coastal realignment schemes. The spatially-distributed study of the geomorphoiogy of intertidal areas using remotely-sensed digital terrain models remains problematic, owing to their small relief, often of the order of a few tens of centimetres, and to the presence of short and dense vegetation, which strongly reduces the number of resolvable ground returns. Here, we use high-resolution Terrestrial Laser Scanning (~200 returns/m~2) to retrieve a high-resolution and high-accuracy Digital Terrain Model within a tidal marsh in the Venice lagoon. To this aim we apply a new filtering scheme to Terrestrial Laser Scanner data which selects the lowest values within moving windows, whose optimal size is determined with the aid of a limited number of ancillary Differential CPS data in order to maximize resolution while ensuring the identification of true ground returns. The accuracy of the filtered data is further refined using classifications of the intensity of the returns to extract additional information on the surface (ground or canopy) originating the returning laser beam. Validations against about 200 reference Differential GPS ground elevation observations indicates that the best separation of canopy and ground signals is obtained using a low-pass filter with window size of the order of 1 m and the maximum likelihood classifier to further refine the detection of ground returns. In this case the average estimation error is about 1 cm (slight overestimation of ground elevation), while its standard deviation is about 3 cm. Our approach allows the separation of laser returns coming from the low marsh vegetation from those coming from the marsh surface. The overall result is a new observation technique producing Digital Terrain and Digital Surface Models in areas with very small relief, which is shown to provide unprecedented high-resolution and high-accuracy characterizations of marsh morphology.
机译:沼泽是河口和泻湖中无处不在的地貌,重要的水文,形态和生态过程在此发生。这些区域减弱了海岸上的海洋活动并充当了沉积物捕获区。由于其生态系统功能以及对海岸稳定的影响,沼泽是潮汐环境中生物学和地貌上的关键结构,并且是湿地恢复和海岸调整方案的基本要素。使用遥感数字地形模型对潮间带地貌进行空间分布研究仍然存在问题,这是由于它们的地势小(通常为几十厘米),并且存在短而茂密的植被,这在很大程度上减少可解决的地面收益。在这里,我们使用高分辨率的陆地激光扫描(〜200个返回/ m〜2)在威尼斯泻湖的潮汐沼泽中检索高分辨率和高精度的数字地形模型。为此,我们对地面激光扫描仪数据应用了一种新的过滤方案,该方案选择了移动窗口内的最低值,其最佳大小是借助于有限数量的辅助差分CPS数据确定的,以便在确保识别真正的回报。使用返回强度的分类进一步过滤数据的准确性,以提取源于返回激光束的表面(地面或树冠)上的其他信息。针对大约200个参考差分GPS地面高程观测值进行的验证表明,使用窗口大小约为1 m的低通滤波器和最大似然分类器可进一步优化地面回波的检测,从而获得冠层和地面信号的最佳分离。在这种情况下,平均估计误差约为1 cm(对地面标高的轻微高估),而其标准偏差约为3 cm。我们的方法允许将来自低沼泽植被的激光返回与来自沼泽表面的激光返回分开。总体结果是在浮雕很小的区域产生了数字地形和数字表面模型的新观测技术,该技术被证明可以提供前所未有的高分辨率和高精度的沼泽形态表征。

著录项

  • 来源
    《Geomorphology》 |2009年第2期|12-20|共9页
  • 作者单位

    CIRGEO-Interdepartmental Research Center for Geamatics, University of Padova, viale dell'Universita 16, 35020 Legnaro Padova, Italy;

    CIRGEO-Interdepartmental Research Center for Geamatics, University of Padova, viale dell'Universita 16, 35020 Legnaro Padova, Italy;

    CIRGEO-Interdepartmental Research Center for Geamatics, University of Padova, viale dell'Universita 16, 35020 Legnaro Padova, Italy;

    Department of Earth Observation and Space Systems, Delft University of Technology, Kluyverweg 1,2629 HS Delft, The Netherlands;

    Department of Hydraulic, Maritime, Environmental and Geotechm'cal Engineering, University of Padova, via Loredan 20, 35131 Padova, Italy International Center for Hydrology, University of Padova, via Loredan 20, 35131 Padova, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    terrestrial laser scanner; DTM; salt marsh; vegetation; filtering; clustering;

    机译:地面激光扫描仪DTM;盐沼植被;过滤聚类;

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