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Accuracy Assessment of DEMs in Different Topographic Complexity Based on an Optimum Number of GCP Formulation and Error Propagation Analysis

机译:基于最佳GCP公式数量和误差传播分析的不同地形复杂度DEM精度评估

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One of the main concerns during digital elevation model (DEM) evaluation is the number of ground control points (GCP). Accordingly, in this paper, a new method is proposed for calculating the appropriate number of GCPs for DEM evaluation based on a confidence interval (CI) of the root-mean-square error (RMSE). This method was employed to determine the CI of the estimated vertical accuracy of Advanced Land Observing Satellite (ALOS) World 3D-30m (AW3D30), Shuttle Radar Topography Mission (SRTM), and Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) Global Digital Elevation Model (GDEM) Free 30 m resolution global DEMs in mountainous, hilly, flat, and urban regions of two study areas. To provide a more reliable estimation of errors, robust statistical methods, including median, normalized median absolute deviation (NMAD), and Huber's mu and sigma were also investigated. Furthermore, a new formulation was developed to analyze the propagation of the errors in the slope and aspect products of DEM. The results showed that, to evaluate the accuracy of AW3D30, ASTER GDEM, and SRTM with a CI of +/- 1 m and the probability of 99%, in the study area, a minimum number of 2,110, 1,483 and 750 GCPs are required, respectively. The results also showed that, in the flat, hilly, and mountainous study areas, AW3D30 was the most accurate DEM. However, SRTM fit better to the urban study area. Finally, the results of the error propagation analysis illustrated that the slope and aspect errors bore a striking relation to the surface gradient.
机译:数字高程模型(DEM)评估过程中主要关注的问题之一是地面控制点(GCP)的数量。因此,在本文中,提出了一种新的方法,用于基于均方根误差(RMSE)的置信区间(CI)计算用于DEM评估的GCP的适当数量。该方法用于确定高级陆地观测卫星(ALOS)世界3D-30m(AW3D30),航天飞机雷达地形任务(SRTM)和高级星载热发射与反射辐射仪(ASTER)的估计垂直精度的CI海拔模型(GDEM)在两个研究区域的山区,丘陵,平坦和城市地区提供30 m分辨率的全球DEM。为了提供更可靠的误差估计,还研究了可靠的统计方法,包括中位数,标准化中位数绝对偏差(NMAD)以及Huber的mu和sigma。此外,开发了一种新的公式来分析DEM的坡度和长宽积中误差的传播。结果表明,要评估AW3D30,ASTER GDEM和SRTM的准确性(CI为+/- 1 m,概率为99%),在研究区域中,最少需要2,110、1,483和750个GCP , 分别。结果还表明,在平坦,丘陵和山区研究区域,AW3D30是最准确的DEM。但是,SRTM更适合城市学习区域。最后,误差传播分析的结果表明,坡度和纵横比误差与表面坡度有着惊人的关系。

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