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Accuracy Assessment of Digital Elevation Model (DEM) Data Obtained from ASTER Satellite in Flat Land

机译:从平地紫杉卫星获得数字高度模型(DEM)数据的准确性评估

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It is important to investigate the accuracy of Digital Elevation Models (DEMs) because of their crucial impact on all engineering and scientific disciplines. Photogrammetry, traditional surveying, remote sensing systems and satellite whole DEMs output methods. In this paper include the DEM data produced by the ASTER satellite (Band near-infrared wavelength region from 0.78 to 0.86 μm), where tested and evaluation DEM data for an area of 100 square kilometers in Al-Shtra city. The technique used to evaluate was twofold: first method was to use statistical methods; second method is to take advantage of applied linear transformation equation to detect the gap between Z-DEM and Z-Global Navigation Satellite System (GNSS) (which represents reality (. The result of a root means square error (RMSE) is 5.087m, where it was calculated based on the observed data in the field using GNSS. And standard deviation error (SDT err) was 5.088 m, while after applied linear transformation equation the RMSE reduction to about 80%, which indicates a large bias between the Z-DEM and Z-GPS.
机译:据调查,因为对所有的工程和科学领域的重要影响数字高程模型(DEM)的准确度是很重要的。摄影测量,传统的测量,遥感系统和卫星的整个DEM输出方法。在本文中包括由ASTER卫星(0.78〜0.86微米波段的近红外波长区域),其中对于以Al-Shtra市的100平方公里的区域进行测试和评价DEM数据产生的DEM数据。用于评估的技术是双重的:第一种方法是使用统计方法;第二种方法是利用施加的线性变换方程来检测Z-DEM和Z-全球导航卫星系统(GNSS)(其表示现实之间的间隙(一个均方根误差的结果(RMSE)是5.087米,它被基于使用全球导航卫星系统在现场观察到的数据来计算。和标准偏差误差(SDT ERR)为5.088米,而施加线性变换方程的RMSE减少至约80%,这表明Z-之间存在大的偏差后DEM和Z-GPS。

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