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S-NPP VIIRS Thermal Emissive Band Gain Correction during the Blackbody Warm-Up-Cool-Down Cycle

机译:S-NPP VIIRS在黑体预热冷却周期内的热发射带增益校正

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The Suomi National Polar orbiting Partnership (S-NPP) Visible Infrared Imaging Radiometer Suite (VIIRS) has onboard calibrators called blackbody (BB) and Space View (SV) for Thermal Emissive Band (TEB) radiometric calibration. In normal operation, the BB temperature is set to 292.5 K providing one radiance level. From the NOAA's Integrated Calibration and Validation System (ICVS) monitoring system, the TEB calibration factors (F-factors) have been trended and show very stable responses, however the BB Warm-Up-Cool-Down (WUCD) cycles provide detectors' gain and temperature dependent sensitivity measurements. Since the launch of S-NPP, the NOAA Sea Surface Temperature (SST) group noticed unexpected global SST anomalies during the WUCD cycles. In this study, the TEB F-factors are calculated during the WUCD cycle on June 17th 2015. The TEB F-factors are analyzed by identifying the VIIRS On-Board Calibrator Intermediate Product (OBCIP) files to be Warm-Up or Cool-Down granules. To correct the SST anomaly, an F-factor correction parameter is calculated by the modified C1 (or b1) values which are derived from the linear portion of C1 coefficient during the WUCD. The F-factor correction factors are applied back to the original VIIRS SST bands showing significantly reducing the F-factor changes. Obvious improvements are observed in M12, M14 and M16, but corrections effects are hardly seen in M16. Further investigation is needed to find out the source of the F-factor oscillations during the WUCD.
机译:Suomi National Orbiting Partnership(S-NPP)可见红外成像辐射计套件(VIIRs)具有名为Black Body(BB)的板载校准器,以及用于热发射带(TEB)辐射校准的空间视图(SV)。在正常操作中,BB温度设定为292.5 k,提供一个辐射水平。从NOAA的集成校准和验证系统(ICVS)监控系统中,TEB校准因子(F因子)已经趋势,并显示出非常稳定的响应,但BB预热冷却(WUCD)循环提供探测器的增益和温度依赖性灵敏度测量。自S-NPP的发射以来,NOAA海面温度(SST)组在WUCD循环期间注意到了意外的全球性SST异常。在这项研究中,TEB F因子在2015年6月17日在WUCD周期计算。通过识别载体校准器中间产品(OBCIP)文件来分析TEB F因子以预热或冷却颗粒。为了纠正SST异常,通过从WUCD期间从C1系数的线性部分导出的修改的C1(或B1)值来计算F系数校正参数。 F系数校正因子施加回原始VIIRS SST条带,显示出显着降低F因子变化。在M12,M14和M16中观察到明显的改进,但在M16中几乎没有看到校正效应。需要进一步调查,以便在WUCD期间找出F因子振荡的来源。

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