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DEM-Aided Bundle Adjustment With Multisource Satellite Imagery: ZY-3 and GF-1 in Large Areas

机译:DEM辅助的多源卫星影像捆绑调整:ZY-3和GF-1在大范围内

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摘要

In this letter, a new digital elevation model (DEM)-aided bundle block adjustment (BBA) method is proposed which utilizes a rational-polynomial-coefficient affine transformation model and a preconditioned conjugate gradient (PCG) algorithm with multisource satellite imagery (ZY-3 and GF-1) for producing and updating ortho maps of large areas. To deal with the weak geometry of the large blocks, a reference DEM is used in this method as an additional constraint in the BBA. The PCG algorithm is applied to solve the large normal matrix produced by the massive data of the large areas. Our proposed method was tested on three blocks of real data collected by GF-1 panchromatic and multispectral sensors and ZY-3 three-line-camera sensors. The preliminary results show that the proposed method can achieve an accuracy of better than 0.5 pixels in planimetry and is suitable for wide application in ortho-map production. It also has great potential for the ortho-map production of superlarge areas such as the country of China as one block.
机译:在这封信中,提出了一种新的数字高程模型(DEM)辅助束块调整(BBA)方法,该方法利用有理多项式系数仿射变换模型和带有多源卫星图像(ZY- 3和GF-1),用于制作和更新大面积的正射图。为了处理大块的较弱几何形状,在此方法中使用参考DEM作为BBA中的附加约束。 PCG算法用于求解大面积海量数据产生的大法线矩阵。我们提出的方法在GF-1全色和多光谱传感器以及ZY-3三线相机传感器收集的三个真实数据上进行了测试。初步结果表明,所提出的方法在平面测量中可以获得优于0.5像素的精度,适合在正射图制作中广泛应用。对于像中国这样的大面积地区,正片地图的生产也具有很大的潜力。

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