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Improvement of Gaofen-3 Absolute Positioning Accuracy Based on Cross-Calibration

机译:基于交叉标定的高分3号绝对定位精度的提高

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摘要

The Chinese Gaofen-3 (GF-3) mission was launched in August 2016, equipped with a full polarimetric synthetic aperture radar (SAR) sensor in the C-band, with a resolution of up to 1 m. The absolute positioning accuracy of GF-3 is of great importance, and in-orbit geometric calibration is a key technology for improving absolute positioning accuracy. Conventional geometric calibration is used to accurately calibrate the geometric calibration parameters of the image (internal delay and azimuth shifts) using high-precision ground control data, which are highly dependent on the control data of the calibration field, but it remains costly and labor-intensive to monitor changes in GF-3’s geometric calibration parameters. Based on the positioning consistency constraint of the conjugate points, this study presents a geometric cross-calibration method for the rapid and accurate calibration of GF-3. The proposed method can accurately calibrate geometric calibration parameters without using corner reflectors and high-precision digital elevation models, thus improving absolute positioning accuracy of the GF-3 image. GF-3 images from multiple regions were collected to verify the absolute positioning accuracy after cross-calibration. The results show that this method can achieve a calibration accuracy as high as that achieved by the conventional field calibration method.
机译:中国的高分三号(GF-3)任务于2016年8月发射,在C波段配备了全极化合成孔径雷达(SAR)传感器,分辨率高达1 m。 GF-3的绝对定位精度非常重要,在轨几何校准是提高绝对定位精度的关键技术。传统的几何校准用于使用高精度地面控制数据来精确校准图像的几何校准参数(内部延迟和方位角偏移),该数据高度依赖于校准场的控制数据,但仍然昂贵且费力。集中监测GF-3的几何校准参数的变化。基于共轭点的定位一致性约束,本研究提出了一种几何交叉校准方法,用于快速,准确地校准GF-3。所提出的方法可以在不使用角反射器和高精度数字高程模型的情况下准确地校准几何校准参数,从而提高了GF-3图像的绝对定位精度。收集来自多个区域的GF-3图像以验证交叉校准后的绝对定位精度。结果表明,该方法可以实现与常规现场校准方法相同的校准精度。

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