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Advances and perspectives of on-orbit geometric calibration for high-resolution optical satellites

机译:高分辨率光学卫星在轨几何定标的研究进展与展望

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On-orbit geometric calibration is a critical and essential step to guarantee the high geometric positioning accuracy of high-resolution optical satellite imagery. In this paper, we first review and summarize the on-orbit geometric calibration methods for high-resolution optical satellite and then analyze their advantages and disadvantages. Finally, we present our perspective on on-board geometric calibration which can be implemented automatically in real time. With the overview of geometric calibration developed in the past decades, the two conclusions could be driven up: (1) the current on-orbit geometric calibration technology based on ground control points (GCPs) has been mature, which can largely improve the geometric positioning accuracy of satellite imagery; (2) new innovation method of on-board geometric calibration for real-time improvement of satellite imagery positioning accuracy is needed. In the end, this paper presents our technique frame of on-board geometric calibration system.
机译:在轨几何校准是确保高分辨率光学卫星图像的高几何定位精度的关键且必不可少的步骤。在本文中,我们首先回顾并总结了高分辨率光学卫星的在轨几何定标方法,然后分析了它们的优缺点。最后,我们提出了关于车载几何校准的观点,该校准可以实时自动执行。借助过去几十年来对几何定标的概述,可以得出以下两个结论:(1)当前基于地面控制点(GCP)的在轨几何定标技术已经成熟,可以在很大程度上改善几何定位卫星图像的准确性; (2)需要一种新型的机载几何校准创新方法,以实时提高卫星图像的定位精度。最后,本文介绍了我们的车载几何校准系统的技术框架。

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