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Automated Bias-Compensation Approach for Pushbroom Sensor Modeling Using Digital Elevation Model

机译:使用数字高程模型进行自动扫帚传感器偏置补偿的自动方法

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摘要

Bias compensation of rational polynomial coefficients (RPCs) is one of the most important preprocessing steps in high-resolution satellite image processing. It generally requires accurate ground control points (GCPs), but GCP acquisition is both time consuming and laborious. In this paper, we propose a time- and cost-efficient method for automated bias compensation of the RPC of high-resolution stereo image pairs. Two Korean Multi-purpose Satellite-2 (KOMPSAT-2) stereo image pairs acquired in Daejeon and Busan, Korea, and the Shuttle Radar Topographic Mission (SRTM) digital elevation model (DEM) with the spatial resolution of 3 arcsec (∼90 m) were used for analysis. In the two study areas, 33 and 29 check points were respectively used for the performance evaluation. After bias compensation with the proposed method, the root-mean-square (RMS) errors for both of the study areas were less than 10 m, in all coordinate components, while the RMS error vectors were approximately 10 m. Although the RMS error vectors were slightly larger than the standard deviations of the residual errors of the initial ground coordinates, it would seem that they yielded acceptable values because the proposed method largely depends on the spatial resolution, the error of the SRTM DEM, the tie point selection error, and so on. Therefore, it can be concluded that the proposed method allows for the automated bias compensation of RPCs of KOMPSAT-2 images.
机译:有理多项式系数(RPC)的偏差补偿是高分辨率卫星图像处理中最重要的预处理步骤之一。通常,它需要精确的地面控制点(GCP),但获取GCP既费时又费力。在本文中,我们提出了一种节省时间和成本的方法,用于高分辨率立体图像对的RPC的自动偏差补偿。在韩国大田和釜山获得了两个韩国多功能卫星2(KOMPSAT-2)立体图像对,以及空间分辨率为3 arcsec(〜90 m)的航天飞机雷达地形任务(SRTM)数字高程模型(DEM) )进行分析。在两个研究区域中,分别使用了33个和29个检查点进行绩效评估。在使用所提出的方法进行偏差补偿之后,在所有坐标分量中,两个研究区域的均方根(RMS)误差均小于10 m,而RMS误差向量约为10 m。尽管RMS误差向量比初始地面坐标的残留误差的标准偏差稍大,但似乎它们产生了可接受的值,因为所提出的方法很大程度上取决于空间分辨率,SRTM DEM的误差,平差点选择错误,等等。因此,可以得出结论,提出的方法允许对KOMPSAT-2图像的RPC进行自动偏差补偿。

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