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Radiometric consistency assessment of hyperspectral infrared sounders

机译:高光谱红外测深仪的辐射一致性评估

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The radiometric and spectral consistency among the Atmospheric Infrared Sounder (AIRS), the Infrared Atmospheric Sounding Interferometer (IASI), and the Cross-track Infrared Sounder (CrIS) is fundamental for the creation of long-term infrared (IR) hyperspectral radiance benchmark data sets for both intercalibration and climate-related studies. In this study, the CrIS radiance measurements on Suomi National Polar-orbiting Partnership (SNPP) satellite are directly compared with IASI on MetOp-A and MetOp-B at the finest spectral scale and with AIRS on Aqua in 25 selected spectral regions through simultaneous nadir overpass (SNO) observations in 2013, to evaluate radiometric consistency of these four hyperspectral IR sounders. The spectra from different sounders are paired together through strict spatial and temporal collocation. The uniform scenes are selected by examining the collocated Visible Infrared Imaging Radiometer Suite (VIIRS) pixels. Their brightness temperature (BT) differences are then calculated by converting the spectra onto common spectral grids. The results indicate that CrIS agrees well with IASI on MetOp-A and IASI on MetOp-B at the long-wave IR (LWIR) and middle-wave IR (MWIR) bands with 0.1-0.2K differences. There are no apparent scene-dependent patterns for BT differences between CrIS and IASI for individual spectral channels. CrIS and AIRS are compared at the 25 spectral regions for both polar and tropical SNOs. The combined global SNO data sets indicate that the CrIS-AIRS BT differences are less than or around 0.1K among 21 of 25 spectral regions and they range from 0.15 to 0.21K in the remaining four spectral regions. CrIS-AIRS BT differences in some comparison spectral regions show weak scene-dependent features.
机译:大气红外测深仪(AIRS),红外大气测深干涉仪(IASI)和跨轨红外测深仪(CrIS)之间的辐射度和光谱一致性是创建长期红外(IR)高光谱辐射基准数据的基础为相互校准和与气候相关的研究设置了一套。在这项研究中,直接将Suomi国家极地轨道伙伴关系(SNPP)卫星上的CrIS辐射测量值与MetOp-A和MetOp-B上的IASI进行了最精细的光谱比较,并通过同时的最低点与25个选定光谱区域中的Aqua上的AIRS进行了比较。在2013年进行的天桥(SNO)观测,以评估这四个高光谱红外测深仪的辐射一致性。来自不同发声器的频谱通过严格的空间和时间搭配而配对在一起。通过检查并置的可见红外成像辐射计套件(VIIRS)像素来选择统一的场景。然后,通过将光谱转换为公共光谱网格来计算其亮度温度(BT)差异。结果表明,CrIS与IASI在MetOp-A上的IASI和IASI在MetOp-B上的长波IR(LWIR)和中波IR(MWIR)波段相差0.1-0.2K。对于单个频谱通道,CrIS和IASI之间的BT差异没有明显的场景相关模式。在极地和热带SNOs的25个光谱区域比较CrIS和AIRS。合并的全球SNO数据集表明,CrIS-AIRS BT差异在25个光谱区域中的21个光谱区域中小于或约为0.1K,在其余四个光谱区域中,其范围在0.15至0.21K之间。在某些比较光谱区域中,CrIS-AIRS BT差异显示出弱于场景的特征。

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