
The GF-3 satellite is the first multi-polarization synthetic aperture radar (SAR) imaging satellite in China, which operates in the C band with a resolution of 1 m. Although the SAR satellite system was geometrically calibrated during the in-orbit commissioning phase, there are still some system errors that affect its geometric positioning accuracy. In this study, these errors are classified into three categories: fixed system error, time-varying system error, and random error. Using a multimode hybrid geometric calibration of spaceborne SAR, and considering the atmospheric propagation delay, all system errors can be effectively corrected through high-precision ground control points and global atmospheric reference data. The geometric calibration experiments and accuracy evaluation for the GF-3 satellite are performed using ground control data from several regions. The experimental results show that the residual system errors of the GF-3 SAR satellite have been effectively eliminated, and the geometric positioning accuracy can be better than 3 m.
atmospheric propagation delay correction, SAR; GF-3 satellite; atmospheric propagation delay correction; geometric positioning accuracy; ground control points, ground control points, Chemical technology, GF-3 satellite, TP1-1185, geometric positioning accuracy, Article, SAR
atmospheric propagation delay correction, SAR; GF-3 satellite; atmospheric propagation delay correction; geometric positioning accuracy; ground control points, ground control points, Chemical technology, GF-3 satellite, TP1-1185, geometric positioning accuracy, Article, SAR
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