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On-Ground Processing of Yaogan-24 Remote Sensing Satellite Attitude Data and Verification Using Geometric Field Calibration

机译:姚干24号遥感卫星姿态数据地面处理及几何场标定验证。

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摘要

Satellite attitude accuracy is an important factor affecting the geometric processing accuracy of high-resolution optical satellite imagery. To address the problem whereby the accuracy of the Yaogan-24 remote sensing satellite’s on-board attitude data processing is not high enough and thus cannot meet its image geometry processing requirements, we developed an approach involving on-ground attitude data processing and digital orthophoto (DOM) and the digital elevation model (DEM) verification of a geometric calibration field. The approach focuses on three modules: on-ground processing based on bidirectional filter, overall weighted smoothing and fitting, and evaluation in the geometric calibration field. Our experimental results demonstrate that the proposed on-ground processing method is both robust and feasible, which ensures the reliability of the observation data quality, convergence and stability of the parameter estimation model. In addition, both the Euler angle and quaternion could be used to build a mathematical fitting model, while the orthogonal polynomial fitting model is more suitable for modeling the attitude parameter. Furthermore, compared to the image geometric processing results based on on-board attitude data, the image uncontrolled and relative geometric positioning result accuracy can be increased by about 50%.
机译:卫星姿态精度是影响高分辨率光学卫星图像几何处理精度的重要因素。为了解决耀干24号遥感卫星的机载姿态数据处理精度不够高,无法满足其图像几何处理要求的问题,我们开发了一种方法,该方法涉及地面姿态数据处理和数字正射( DOM)和几何标定字段的数字高程模型(DEM)验证。该方法着重于三个模块:基于双向滤波器的地面处理,整体加权平滑和拟合以及几何校准领域中的评估。我们的实验结果表明,提出的地面处理方法既鲁棒又可行,可确保观测数据质量的可靠性,参数估计模型的收敛性和稳定性。另外,欧拉角和四元数都可以用来建立数学拟合模型,而正交多项式拟合模型更适合于对姿态参数进行建模。此外,与基于机载姿态数据的图像几何处理结果相比,不受控制的图像和相对几何定位结果的准确性可以提高约50%。

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