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Accuracy of sand beach topography surveying by drones and photogrammetry

机译:无人机和摄影测量沙滩地形测量的准确性

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titleAbstract/titlepBeaches are characterized by high morphodynamic activity, and high-frequency measurements are needed to understand their states and rates of change. Ideally, beach survey methods should be at once accurate, rapid and low-cost. Recently, unmanned aerial systems (drones) have been increasingly utilized to measure beach topography. In this paper, we present a review of the state of art in drones and photogrammetry for beach surveys and the respective achieved measurement quality (where reported). We then show how drones with a minimal configuration and a low-cost setup can meet the high accuracy and rapidity required for beach surveys. To test a minimal drone and ground control point configuration, we used consumer-grade equipment to perform the same flight path with different cameras and at different altitudes. We then used photogrammetry to produce digital elevation models of the beach. Using a GNSS-RTK system, we collected 2950 independent control points to evaluate the accuracy of the digital elevation models. Results show that, once a few potential sources of uncertainties in the final digital elevation model are taken into account, the average RMSE(z) of the digital elevation models was ~5?cm, with a survey efficiency of ca. 3?msup2/sup?minsup?1/sup. Digital elevation models taken at different times were used to calculate the before–after sediment budget following a storm that hit a sandy coast in Sylt Island at the German North Sea coast./p
机译:摘要海滩具有高形态动力学活性的特点,需要高频测量来了解其状态和变化率。理想情况下,海滩调查方法应同时准确、快速和低成本。最近,无人机系统(无人机)越来越多地用于测量海滩地形。在本文中,我们回顾了无人机和摄影测量在海滩调查中的最新进展,以及各自实现的测量质量(如报告)。然后,我们展示了具有最小配置和低成本设置的无人机如何满足海滩调查所需的高精度和快速性。为了测试最小的无人机和地面控制点配置,我们使用消费级设备在不同的摄像机和不同的高度执行相同的飞行路径。然后,我们使用摄影测量法制作了海滩的数字高程模型。使用GNSS-RTK系统,我们收集了2950个独立的控制点,以评估数字高程模型的准确性。结果表明,在考虑最终数字高程模型中一些潜在的不确定性源后,数字高程模型的平均RMSE(z)为~5?cm,测量效率约为3?m2?min?1。在不同时间拍摄的数字高程模型用于计算风暴袭击德国北海沿岸叙尔特岛沙质海岸后的沉积物预算。

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