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MULTI-OBSERVATION BLOCK ADJUSTMENT BY RATIONAL FUNCTION MODEL WITHOUT GROUND CONTROL POINTS

机译:无理性函数模型无接地控制点的多观察块调整

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As an indispensable part of remote sensing image preprocessing, geometric correction has a great influence on the application of remote sensing images. Traditional geometric correction requires lots of well-distributed ground control points (GCPs). However, GCPs are difficult to obtain GCPs in some places such as mountain and desert areas. For this reason, we propose a Multi-Observation Block Adjustment (MOBA) method to get accurate geo-position without control points. The method improves the geometric positioning accuracy by the error compensation parameters of the remote sensing images, which caculated from block adjustment error equations. Different from tranditional method, error equations are built depending on multi-projection in image space of a single object. In this way, error equation can converge to more accurate solution. Experiments of ZY-3 with wide baseline and GF-2 with narrow baseline show that the proposed method can significantly improve geometric positioning accuracy of both kinds of remote sensing images.
机译:作为遥感图像预处理的不可或缺的部分,几何校正对遥感图像的应用具有很大的影响。传统的几何校正需要大量的分布式地面控制点(GCPS)。然而,GCP难以在山区和沙漠地区等一些地方获得GCP。因此,我们提出了一种多观察块调整(MOBA)方法,以在没有控制点的情况下获得准确的地理位置。该方法通过从块调整误差方程灌溉的遥感图像的误差补偿参数来提高几何定位精度。与运动方法不同,错误方程根据单个对象的图像空间中的多投影构建。以这种方式,误差方程可以收敛到更准确的解决方案。 ZY-3具有宽基线和GF-2的ZY-3实验,具有窄基线,表明该方法可以显着提高两种遥感图像的几何定位精度。

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