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Quantifying uncertainty in high-resolution remotely sensed topographic surveys for ephemeral gully channel monitoring

机译:量化用于临时沟渠监测的高分辨率遥感地形测量中的不确定性

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Spatio-temporal measurements of landform evolution provide the basis for process-based theory formulation and validation. Over time, field measurements of landforms have increased significantly worldwide, driven primarily by the availability of new surveying technologies. However, there is no standardized or coordinated effort within the scientific community to collect morphological data in a dependable and reproducible manner, specifically when performing long-term small-scale process investigation studies. Measurements of the same site using identical methods and equipment, but performed at different time periods, may lead to incorrect estimates of landform change as a result of three-dimensional registration errors. This work evaluated measurements of an ephemeral gully channel located on agricultural land using multiple independent survey techniques for locational accuracy and their applicability in generating information for model development and validation. Terrestrial and unmanned aerial vehicle photogrammetry platforms were compared to terrestrial lidar, defined herein as the reference dataset. Given the small scale of the measured landform, the alignment and ensemble equivalence between data sources was addressed through postprocessing. The utilization of ground control points was a prerequisite to three-dimensional registration between datasets and improved the confidence in the morphology information generated. None of the methods were without limitation; however, careful attention to project preplanning and data nature will ultimately guide the temporal efficacy and practicality of management decisions.
机译:地貌演化的时空测量为基于过程的理论制定和验证提供了基础。随着时间的流逝,在全球范围内,主要受到新测量技术的推动,地貌的野外测量已大大增加。但是,在科学界内没有标准化或协调的工作来以可靠和可重复的方式收集形态学数据,特别是在进行长期的小规模过程研究时。使用相同的方法和设备,但在不同时间段执行的同一站点的测量,可能会由于三维配准误差而导致对地貌变化的错误估计。这项工作使用多种独立的调查技术评估了位于农田上的一条临时沟渠的测量结果,以了解位置准确性及其在生成信息以进行模型开发和验证中的适用性。将地面和无人机摄影测量平台与地面激光雷达(在此定义为参考数据集)进行了比较。鉴于所测量地形的规模较小,通过后处理解决了数据源之间的对齐和整体等效问题。利用地面控制点是在数据集之间进行三维配准的先决条件,并提高了对生成的形态信息的信心。没有一种方法是没有限制的。但是,对项目预计划和数据性质的仔细关注最终将指导管理决策的时间有效性和实用性。

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