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Intercalibration Between Special Sensor Microwave Imager/Sounder and Special Sensor Microwave Imager

机译:特殊传感器微波成像仪/声波探测器与特殊传感器微波成像仪之间的相互校准

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The F16 satellite was successfully launched on October 18, 2003, carrying the first Special Sensor Microwave Imager/Sounder (SSMIS) onboard. In this paper, the SSMIS imaging channels 12–18 are intercalibated against the F15 Special Sensor Microwave/Imager (SSM/I) instrument using Simultaneous Conical Overpassing (SCO) observations from both satellites. Results show that the SSMIS antenna temperatures have a mean bias as large as 1–2 K with a maximum of 3 K at 22.235 GHz with respect to F15. It appears that the mean biases at frequencies from 19.35 to 37 GHz do not strongly depend on the region and season, although the biases at the 91.655-GHz channels are slightly variable. The intercalibration analysis also shows that the nonlinearity may be one of the major sources resulting in differences between F15 SSM/I and F16 SSMIS measurements. For improved calibration and for the future SSM/I and SSMIS reprocessing, the SCO data are further utilized to resolve the SSMIS and SSM/I nonlinearity terms using a newly developed calibration algorithm. With the derived nonlinearity correction, the mean biases of the antenna temperatures between F15 and F16 are significantly reduced. To intercalibrate SSMIS to the same reference as SSM/I, SSMIS imaging channels can also be linearly mapped to the same and similar F15 SSM/I channels using the SCO matchup data. After the linear mapping, SSMIS snow-free land, snow, and sea ice surface emissivities are consistent with those derived from SSM/I.
机译:F16卫星已于2003年10月18日成功发射,并搭载了首枚特殊传感器微波成像仪/声纳(SSMIS)。在本文中,SSMIS成像通道12–18使用F15特殊传感器微波/成像仪(SSM / I)仪器进行了相互校准,使用了来自两个卫星的同时锥形越过(SCO)观测值。结果表明,SSMIS天线温度的平均偏差最大为1-2 K,相对于F15,在22.235 GHz时最大偏差为3K。似乎在19.35至37 GHz频率处的平均偏差在很大程度上不取决于区域和季节,尽管在91.655 GHz GHz信道上的偏差略有变化。相互校准分析还显示,非线性可能是导致F15 SSM / I和F16 SSMIS测量值之间差异的主要来源之一。为了改进校准并为将来的SSM / I和SSMIS重新处理,SCO数据可进一步利用新开发的校准算法来解析SSMIS和SSM / I非线性项。通过导出的非线性校正,可以显着降低F15和F16之间的天线温度的平均偏差。为了将SSMIS校准为与SSM / I相同的参考,还可以使用SCO匹配数据将SSMIS成像通道线性映射到相同和相似的F15 SSM / I通道。线性映射后,SSMIS的无雪陆地,雪和海冰表面发射率与从SSM / I得出的一致。

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