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Validation of GaoFen-1 Satellite Geometric Products Based on Reference Data

机译:基于参考数据的高芬-1卫星几何产品验证

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摘要

Applications of high-resolution remote sensing satellite data are becoming increasingly extensive. China has launched a series of high-resolution optical satellites: GaoFen-1 (GF-1), GaoFen-2, etc., and published several remote sensing image products. However, validation of the long time series of these satellite geometric products is lacking. Therefore, this study selects 2013-2016 GaoFen-1 satellite geometry products for the Beijing area over four years, obtaining a total of 164 images, and uses ZY-3 satellite products to verify the accuracy of the data set. Moreover, the positioning accuracy of the geometric products of two camera types carried by GF-1 (wide field of view, WFV; panchromatic and multispectral, PMS) is analyzed. The results yield the following conclusions. (1) GF-1 satellite geometric products have obvious systematic errors, and the error value varies significantly with the orbit time. (2) The internal distortion of the GF-1 satellite image is well controlled, and the geometric offset magnitude and direction of ground control points (GCPs) are very similar in the interior of each scene. (3) In a short period of time (20 days), the offset direction of the four WFV cameras is very similar, but there is a small difference in the mean plane offset (RMSE2D). The RMSE2D and offset direction of the two PMS cameras are very similar. (4) In the long term, the relative offset of the WFV and PMS cameras varies with the satellite orbit time. At the first year of the satellite orbit time (in 2014), the relative offsets of four WFV cameras increased to maximum (168.96 m, 171.12 m, 226.65 m, and 207.04 m). From 2015 to 2016, the offsets decreased to a relatively stable state (within 100 m). (5) This validation method based on reference data is shown to be feasible. This study provides an important reference for the application of high-resolution remote sensing satellite products.
机译:高分辨率遥感卫星数据的应用变得越来越广泛。中国推出了一系列高分辨率光学卫星:高芬-1(GF-1),高芬-2等,并发布了几种遥感图像产品。然而,缺乏这些卫星几何产品的长时间系列的验证。因此,本研究选择2013-2016高芬-1卫星几何产品,为北京地区为4年,获得总共164张图像,并采用ZY-3卫星产品验证了数据集的准确性。此外,分析了GF-1携带的两种摄像机类型的几何产品的定位精度(宽视野,WFV;平面和多光谱,PMS)。结果产生了以下结论。 (1)GF-1卫星几何产品具有明显的系统误差,误差值随着轨道时间而异。 (2)GF-1卫星图像的内部变形良好控制,并且在每个场景的内部非常相似的地面控制点(GCPS)的几何偏移幅度和方向。 (3)在短时间(20天)中,四个WFV摄像机的偏移方向非常相似,但平均平均偏移量(RMSE2D)存在较小的差异。两个PM相机的RMSE2D和偏移方向非常相似。 (4)在长期之后,WFV和PMS摄像机的相对偏移随卫星轨道时间而变化。在卫星轨道时间的第一年(2014年),四个WFV摄像机的相对偏移量增加至最大值(168.96米,171.12米,226.65米和207.04米)。从2015到2016年,偏移量减少到相对稳定的状态(100米范围内)。 (5)基于参考数据的该验证方法显示是可​​行的。本研究为应用高分辨率遥感卫星产品提供了重要的参考。

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