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Lifetime radiometric calibration of HJ-1A/B CCD sensor using Dunhuang Gobi Site

机译:使用敦煌戈壁站点对HJ-1A / B CCD传感器进行终身辐射校准

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Dunhuang Gobi site, a pseudo-invariant ground target, has been extensively used to calibrate the remote sensing instruments because of its high spatial and spectral uniformity and good temporal stability. Four Charge Coupled Device (CCD) sensors onboard HUANGJING-A/B (HJ-1A/B) satellites have been running 5-years since launched in 2008, and provided important remote sensing data for land surface reflectance retrieval, bio/geophysical variables estimation and environment pollution /disaster monitoring. The radiometric performance of HJ-1A/B CCD may change after launched because of many factors, thus, we have carried out many ground measurement campaigns at a pseudo-invariant test site-Dunhuang gobi to perform radiometric calibration of these sensors. This article describes the characteristics of Dunhuang gobi site and lifetime radiometric calibration monitoring results obtained for four CCD sensors. The results indicate that the long-term changes in calibration coefficients trending exceeding the dark-noise changes are primarily due to the drifts in the CCD radiometric responsivity, and the degradations of HJ-1A/B CCD are from -2.3%/year to -9.5%/year.
机译:敦煌戈壁站点是伪不变的地面目标,由于其空间和频谱均匀性高,时间稳定性好,已被广泛用于校准遥感仪器。自2008年发射以来,黄晶A / B(HJ-1A / B)卫星上的4个电荷耦合器件(CCD)传感器已经运行了5年,为陆地表面反射率检索,生物/地球物理变量估计提供了重要的遥感数据。和环境污染/灾害监测。由于许多因素,HJ-1A / B CCD发射后的辐射性能可能会发生变化,因此,我们在伪不变测试站点敦煌戈壁进行了许多地面测量活动,以对这些传感器进行辐射校准。本文介绍了敦煌戈壁滩的特征以及对四个CCD传感器进行的寿命辐射定标监测结果。结果表明,校准系数的长期变化趋于超过暗噪声变化,主要是由于CCD辐射响应度的漂移所致,HJ-1A / B CCD的退化率从-2.3%/年降到- 9.5%/年。

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