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Vertical Accuracy Assessment of DSM from TerraSAR-X and DTM from Aerial Photogrammetry on Paddy Fields – Karawang, Indonesia

机译:稻田上TerraSAR-X的DSM和DTM的航空摄影测量的垂直精度评估–卡拉旺,印度尼西亚

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A Digital Terrain Model (DTM) is a digital model representing the earth ‘s surface topography in three dimensions (3D) while a Digital Surface Model (DSM) represents the whole terrain including the objects on it such as trees and buildings. DTMs can be created through stereo-plotting. The advantage of this method is that the 3D data can be obtained with a high level of accuracy, but the data is limited in cloudy areas. This problem can be solved by using DSM, which can be created using TerraSAR-X and TanDEM-X Satellites with Synthetic Aperture Radar (SAR) system. This research aims to analyze the accuracy of DSMs from TerraSAR-X alongside DTMs extracted from aerial photogrammetry. The accuracy assessment of vertical height was completed by choosing 121 check points spread systematically on a paddy field in Karawang Regency, West Java. As paddy field was chosen to minimize errors between the DSM and DTM. The average, minimum, and maximum value of height differences between the DSM and DTM was calculated to obtain the standard deviation. The result showed that the average height difference between the DSM and DTM was 3.4 m with a minimum and maximum difference as 0.2 m and 10.808 m respectively. The standard deviation obtained was 4.9 m.
机译:数字地形模型(DTM)是一种数字模型,可从三个维度(3D)表示地球的表面地形,而数字表面模型(DSM)则表示整个地形,包括树木和建筑物等物体。可以通过立体绘图创建DTM。该方法的优点是可以高精度获得3D数据,但是在阴天地区数据受到限制。通过使用DSM可以解决此问题,DSM可以使用具有合成孔径雷达(SAR)系统的TerraSAR-X和TanDEM-X卫星创建。这项研究旨在分析TerraSAR-X以及从航空摄影测量中提取的DTM的DSM的准确性。通过选择在西爪哇省卡拉旺摄政区水田中系统分布的121个检查点来完成垂直高度的准确性评估。选择水田是为了最大程度地减少DSM和DTM之间的误差。计算DSM和DTM之间的高度差的平均值,最小值和最大值,以获得标准偏差。结果表明,DSM和DTM之间的平均高度差为3.4 m,最小和最大差分别为0.2 m和10.808 m。获得的标准偏差为4.9 m。

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