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Measuring change at Earth’s surface: On-demand vertical and three-dimensional topographic differencing implemented in OpenTopography

机译:测量地球表面的变化:在Opentopography中实施的按需垂直和三维地形差异

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Topographic differencing measures landscape change by comparing multitemporal high-resolution topography data sets. Here, we focused on two types of topographic differencing: (1) Vertical differencing is the subtraction of digital elevation models (DEMs) that span an event of interest. (2) Three-dimensional (3-D) differencing measures surface change by registering point clouds with a rigid deformation. We recently released topographic differencing in OpenTopography where users perform on-demand vertical and 3-D differencing via an online interface. OpenTopography is a U.S. National Science Foundation–funded facility that provides access to topographic data and processing tools. While topographic differencing has been applied in numerous research studies, the lack of standardization, particularly of 3-D differencing, requires the customization of processing for individual data sets and hinders the community’s ability to efficiently perform differencing on the growing archive of topography data. Our paper focuses on streamlined techniques with which to efficiently difference data sets with varying spatial resolution and sensor type (i.e., optical vs. light detection and ranging [lidar]) and over variable landscapes. To optimize on-demand differencing, we considered algorithm choice and displacement resolution. The optimal resolution is controlled by point density, landscape characteristics (e.g., leaf-on vs. leaf-off), and data set quality. We provide processing options derived from metadata that allow users to produce optimal high-quality results, while experienced users can fine tune the parameters to suit their needs. We anticipate that the differencing tool will expand access to this state-of-the-art technology, will be a valuable educational tool, and will serve as a template for differencing the growing number of multitemporal topography data sets.
机译:通过比较多立体高分辨率地形数据集来衡量景观改变的地形差异。在这里,我们专注于两种类型的地形差异:(1)垂直差异是跨越感兴趣事件的数字高度模型(DEM)的减法。 (2)三维(3-D)差异测量表面通过刚性变形注册点云来改变。我们最近在Opentopography中发布了地形差异,用户通过在线界面执行按需垂直和3-D差异。 Opentopography是美国国家科学基金会资助的设施,提供了对地形数据和处理工具的访问。虽然在众多研究研究中应用了地形差异,但缺乏标准化,特别是3-D差异,需要定制各个数据集的处理,并阻碍社区在越来越多的地形数据存档上有效地执行差异的能力。我们的论文侧重于简化的技术,以有效地差异的空间分辨率和传感器类型(即光学与光检测和测距λ)和变量景观。优化按需差异,我们考虑了算法选择和位移分辨率。最佳分辨率由点密度,景观特征(例如,叶子与叶子上的叶子上的)控制和数据集质量。我们提供从Metadata派生的处理选项,允许用户产生最佳的高质量结果,而经验丰富的用户可以微调参数以满足他们的需求。我们预计差分工具将扩大对此最先进的技术的访问,将是一个有价值的教育工具,并将作为差异差异越来越多的多信代级数据集的模板。

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