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Vicarious Radiometric Calibration of Ocean Color Bands for FY-3D/MERSI-II at Lake Qinghai China

机译:中国湖青海湖FY-3D / MERSI-II海洋色带的替代辐射校准

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摘要

To calibrate the low signal response of the ocean color (OC) bands and test the stability of the Fengyun-3D (FY-3D)/Medium Resolution Spectral Imager II (MERSI-II), an absolute radiometric calibration field test of FY-3D/MERSI-II at the Lake Qinghai Radiometric Calibration Site (RCS) was carried out in August 2018. The lake surface and atmospheric parameters were mainly measured by advanced observation instruments, and the MODerate spectral resolution atmospheric TRANsmittance algorithm and computer model (MODTRAN4.0) was used to simulate the multiple scattering radiance value at the altitude of the sensor. The results showed that the relative deviations between bands 9 and 12 are within 5.0%, while the relative deviations of bands 8, and 13 are 17.1%, and 12.0%, respectively. The precision of the calibration method was verified by calibrating the Aqua/Moderate-resolution Imaging Spectroradiometer (MODIS) and National Polar-orbiting Partnership (NPP)/Visible Infrared Imaging Radiometer (VIIRS), and the deviation of the calibration results was evaluated with the results of the Dunhuang RCS calibration and lunar calibration. The results showed that the relative deviations of NPP/VIIRS were within 7.0%, and the relative deviations of Aqua/MODIS were within 4.1% from 400 nm to 600 nm. The comparisons of three on-orbit calibration methods indicated that band 8 exhibited a large attenuation after launch and the calibration results had good consistency at the other bands except for band 13. The uncertainty value of the whole calibration system was approximately 6.3%, and the uncertainty brought by the field surface measurement reached 5.4%, which might be the main reason for the relatively large deviation of band 13. This study verifies the feasibility of the vicarious calibration method at the Lake Qinghai RCS and provides the basis and reference for the subsequent on-orbit calibration of FY-3D/MERSI-II.
机译:为了校准海洋颜色(OC)频带的低信号响应并测试Fengyun-3D(FY-3D)/中分辨率谱成像II(MERSI-II)的稳定性,FY-3D的绝对辐射校准场测试/ Mersi-II在青海辐射校准场地(RCS)于2018年8月进行。湖面和大气参数主要通过先进的观察仪器测量,以及中等光谱分辨率大气透射算法和计算机模型(Modtran4.0 )用于模拟传感器海拔的多个散射光辐射值。结果表明,带9和12之间的相对偏差在5.0%以内,而带8和13的相对偏差分别为17.1%,12.0%。通过校准AQUA /中频分辨率成像分光镜(MODIS)和国家极性轨道伙伴关系(NPP)/可见红外成像辐射计(VIIR)来验证校准方法的精度,并评估了校准结果的偏差敦煌RCS校准和月球校准的结果。结果表明,NPP / VIIR的相对偏差在7.0%以内,AQUA / MODIS的相对偏差在400nm至600nm的4.1%以内。三个在轨道校准方法的比较表明,发射后,带8呈现大的衰减,校准结果除了带13之外的其他频段具有良好的一致性。整个校准系统的不确定性值约为6.3%,而且现场测量带来的不确定性达到5.4%,这可能是带13相对较大偏差的主要原因。该研究验证了青海湖湖泊中的替代校准方法的可行性,为后续提供了基础和参考FY-3D / MERSI-II的轨道校准。

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