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Onboard Real-time Absolute Radiometric Calibration For Thermal Infrared Channels Of Chinese Geostationary Meteorological Satellites

机译:中国对地静止气象卫星热红外通道的机载实时绝对辐射定标

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Forty-one cloud-free images of Qinghai Lake (QHL) in China and the corresponding digital numbers (DNs) of Feng Yun-2C (FY-2C) at 0000, 0600, 1200, and 1800 UTC from 1 July to 30 September 2005 are analyzed. The corresponding surface water temperatures of QHL measured by the automated hydrometeo-rological buoy (AHMB) system and the atmospheric profiles over QHL from the National Centers for Environmental Prediction (NCEP) reanalysis data are inputted into the atmospheric transfer model MODTRAN3.7 to calculate the entrance pupil radiance and brightness temperatures for thermal infrared (TIR) channels of FY-2C. Then, the absolute radiometric calibration coefficients of FY-2C, which are used to calculate the equivalent blackbody (EBB) temperatures T_(EBB), are calculated by comparing the entrance pupil radiance and brightness temperatures with the corresponding DNs. In addition, the temperatures of onboard blackbody (OBB) T_(OBB), primary, secondary, refraction, and calibration mirrors on the multichannel scanning radiometer (MSR) of FY-2C are detected remotely. Based on the linear correlation between T_(EBB) - T_(OBB) and temperatures of various mirrors, the transform equations from T_(OBB) to T_(EBB) are developed. Finally, the onboard real-time absolute radiometric calibration for TIR channels of geostationary meteorological satellite FY-2C is implemented with an uncertainty of about 1.5 and 2.1 K for TIR 1 and TIR 2 of FY-2C, respectively.
机译:2005年7月1日至9月30日的中国青海湖(QHL)的四十一张无云图像以及风云2C(FY-2C)在0000、0600、1200和1800 UTC的相应数字(DN)被分析。通过自动水文气象浮标(AHMB)系统测得的QHL的相应地表水温度和来自国家环境预测中心(NCEP)再分析数据的QHL上的大气廓线被输入到大气转移模型MODTRAN3.7中,以计算FY-2C的热红外(TIR)通道的入射光瞳辐射和亮度温度。然后,通过将入射光瞳辐射度和亮度温度与相应的DN进行比较,来计算用于计算等效黑体(EBB)温度T_(EBB)的FY-2C绝对辐射校准系数。此外,还可以远程检测FY-2C多通道扫描辐射计(MSR)上的车载黑体(OBB)T_(OBB),主,次,折射和校准镜的温度。基于T_(EBB)-T_(OBB)与各种反射镜温度之间的线性关系,建立了从T_(OBB)到T_(EBB)的转换方程。最后,对静止气象卫星FY-2C的TIR通道进行了车载实时绝对辐射度校准,对于FY-2C的TIR 1和TIR 2分别具有约1.5和2.1 K的不确定性。

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