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Contribution of the UAS to the determination of the water budget in a coastal wetland: a case study in the natural park of the Bay of Cádiz (SW Spain)

机译:uas对沿海湿地的水预算确定水预算的贡献 - 以加迪兹湾的自然公园为例(SW西班牙)

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Wetlands are sensitive and complex systems whose conservation is a priority. For the correct understanding of their hydrological dynamics, it is necessary to determine the different elements of the water budget and, in particular, the geometry of the wetland basin in order to estimate the variations in storage capacity. This paper presents a novel, low-cost, user-friendly photogrammetric technique to obtain high-resolution datasets using non-metric cameras located in unmanned aerial systems (UAS) and structure-from-motion algorithms for producing high-precision 3D point clouds. The accuracy of the cartographic products obtained is evaluated using 59 checkpoints and comparing with the available LiDAR models. Best results are obtained using a full frame RGB sensor, which results in an orthomosaic with a pixel size of 1.38?cm and a positional RMSE of 3.8?cm in horizontal and a digital surface model (DSM) with a 3.5?cm RMSE Z . From the DSM, eliminating the influence of vegetation through masks, a digital terrain model (DTM) with a 5.9-cm RMSE Z that allows defining the filling curve of the wetland basin is obtained. This curve relates the stored volume and the surface exposed to evaporation with the water level, which allows to perform simulations in the balance models.
机译:湿地是敏感的,复杂的系统,其保护是优先权。为了正确理解他们的水文动力学,有必要确定水预算的不同元素,特别是湿地盆地的几何形状,以便估计储存能力的变化。本文介绍了一种新颖的,低成本,用户友好的摄影测图测量技术,用于使用位于无人机(UAS)(UAS)中的非公制摄像机获得高分辨率数据集,以及用于生产高精度3D点云的结构 - 从运动算法。使用59个检查点评估所获得的制图产品的准确性,并与可用的激光雷达模型进行比较。使用全帧RGB传感器获得最佳结果,其导致像素尺寸为1.38Ωcm的正骨,水平和数字表面模型(DSM)中的位置RMSE为3.5Ωcmsz。来自DSM,消除了植被通过掩模的影响,数字地形模型(DTM)具有5.9厘米的RMSE Z,允许定义湿地盆地的填充曲线。该曲线涉及储存的体积,并且表面暴露于与水位蒸发,这允许在平衡模型中进行模拟。

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