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Impact of flight altitude and cover orientation on Digital Surface Model (DSM) accuracy for flood damage assessment in Murcia (Spain) using a fixed-wing UAV

机译:飞行高度和覆盖方向对穆尔西亚(西班牙)洪水损伤评估的数字表面模型(DSM)精度的影响

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摘要

Soil erosion, rapid geomorphological change and vegetation degradation are major threats to the human and natural environment. Unmanned Aerial Systems (UAS) can be used as tools to provide detailed and accurate estimations of landscape change. The effect of flight strategy on the accuracy of UAS image data products, typically a digital surface model (DSM) and orthophoto, is unknown. Herein different flying altitudes (126-235 m) and area coverage orientations (N-S and SW-NE) are assessed in a semi-arid and medium-relief area where terraced and abandoned agricultural fields are heavily damaged by piping and gully erosion. The assessment was with respect to cell size, vertical and horizontal accuracy, absolute difference of DSM, and registration of recognizable landscape features. The results show increasing cell size (5-9 cm) with increasing altitude, and differences between elevation values (10-20 cm) for different flight directions. Vertical accuracy ranged 4-7 cm but showed no clear relationship with flight strategy, whilst horizontal error was stable (2-4 cm) for the different orthophotos. In all data sets, geomorphological features such as piping channels, rills and gullies and vegetation patches could be labeled by a technician. Finally, the datasets have been released in a public repository.
机译:土壤侵蚀,迅速的地貌变化和植被降解对人类和自然环境的主要威胁。无人机空中系统(UAS)可用作工具,以提供对景观变化的详细和准确估算。飞行策略对UAS图像数据产品的准确性的影响,通常是数字表面模型(DSM)和矫形器,是未知的。在此不同飞行的海拔(126-235 m)和面积覆盖定向(N-S和SW-Ne)在半干旱和中等浮雕区域中评估,其中露台和被遗弃的农业领域因管道和沟壑侵蚀严重损坏。评估是关于小区规模,垂直和水平准确度,DSM的绝对差异,以及可识别的景观特征的注册。结果表明,随着高度的增加,增加了电池尺寸(5-9厘米),以及不同飞行方向的仰角值(10-20厘米)之间的差异。垂直精度范围为4-7厘米,但与飞行策略显示没有明确的关系,而水平误差稳定(2-4厘米)用于不同的正原子。在所有数据集中,可以由技术人员标记管道通道,管道和沟渠和植被斑块的地貌特征。最后,数据集已在公共存储库中释放。

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