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Geometric Self-Calibration of YaoGan-13 Images Using Multiple Overlapping Images

机译:使用多个重叠图像对YaoGan-13图像进行几何自校准

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摘要

Geometric calibration is an important means of improving the absolute positioning accuracy of space-borne synthetic aperture radar imagery. The conventional calibration method is based on a calibration field, which is simple and convenient, but requires a great deal of manpower and material resources to obtain ground control points. Although newer cross-calibration methods do not require ground control points, calibration accuracy still depends on a periodically updated reference image. Accordingly, this study proposes a geometric self-calibration method based on the positioning consistency constraint of conjugate image points to provide rapid and accurate calibration of the YaoGan-13 satellite. The proposed method can accurately calibrate geometric parameters without requiring ground control points or high-precision reference images. To verify the absolute positioning accuracy obtained using the proposed self-calibration method, YaoGan-13 Stripmap images of multiple regions were collected and evaluated. The results indicate that high-accuracy absolute positioning can be achieved with a plane accuracy of 3.83 m or better for Stripmap data, without regarding elevation error. Compared to the conventional calibration method using high-accuracy control data, the difference between the two methods is only about 2.53 m, less than the 3-m resolution of the image, verifying the effectiveness of the proposed self-calibration method.
机译:几何校准是提高星载合成孔径雷达图像绝对定位精度的重要手段。传统的标定方法基于标定场,该标定场简单方便,但需要大量的人力和物力来获取地面控制点。尽管较新的交叉校准方法不需要地面控制点,但校准精度仍取决于定期更新的参考图像。因此,本研究提出了一种基于共轭像点定位一致性约束的几何自标定方法,可以对YaoGan-13卫星进行快速,准确的标定。所提出的方法可以精确地校准几何参数,而无需地面控制点或高精度参考图像。为了验证使用所提出的自校准方法获得的绝对定位精度,收集并评估了多个区域的YaoGan-13 Stripmap图像。结果表明,对于Stripmap数据,可以以3.83 m或更高的平面精度实现高精度的绝对定位,而无需考虑高程误差。与使用高精度控制数据的常规校准方法相比,这两种方法之间的差异仅为2.53 m,小于图像的3 m分辨率,从而验证了所提出的自校准方法的有效性。

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