首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Use of Atmospheric Infrared Sounder high–spectral resolution spectra to assess the calibration of Moderate resolution Imaging Spectroradiometer on EOS Aqua
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Use of Atmospheric Infrared Sounder high–spectral resolution spectra to assess the calibration of Moderate resolution Imaging Spectroradiometer on EOS Aqua

机译:利用大气红外测深仪的高光谱分辨率光谱评估EOS Aqua上中等分辨率成像光谱仪的校准

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AIRS and MODIS on the EOS Aqua spacecraft collect global observations of the Earth's upwelling infrared radiance for numerous remote sensing and climate related applications. This paper presents comparisons of the AIRS and MODIS radiance observations and illustrates the utility of using high–spectral resolution observations to create a highly accurate assessment of broadband sensor calibration. In the analysis, the high–spectral resolution AIRS spectra are reduced to MODIS spectral resolution, and the high–spatial resolution MODIS data are reduced to AIRS spatial resolution for global data collected on 6 September 2002 and 18 February 2004. Spatially uniform scenes are selected, and the observed differences are characterized as a function of several parameters including scene temperature, sensor scan (view) angle, and solar zenith angle. The comparisons are in general very good with respect to the expected radiometric accuracies of the sensors, with mean brightness temperature differences of 0.1 K or less for many of the MODIS bands. Uncertainties of these determinations range from near 0 K for window region bands to as large as 0.2 K for other bands. For MODIS water vapor bands 27 (6.8 μm) and 28 (7.3 μm) and temperature sounding bands 34 (13.7 μm), 35 (13.9 μm), and 36 (14.2 μm), the differences exhibit a dependence on scene temperature, with peak differences exceeding 1 K for bands 27 and 36. Differences as a function of scan angle are 0.4 K or less for all bands, and scan angles but clear trends are defined. Results for the 2 days demonstrate good reproducibility with changes in mean differences of 0.1 K or less for most bands.
机译:EOS Aqua航天器上的AIRS和MODIS收集了地球上上升的红外辐射的全球观测资料,用于众多遥感和气候相关应用。本文介绍了AIRS和MODIS辐射观测值的比较,并说明了使用高光谱分辨率观测值创建宽带传感器校准的高精度评估的实用性。在分析中,对于2002年9月6日和2004年2月18日收集的全球数据,将高光谱分辨率的AIRS光谱降低到MODIS光谱分辨率,并将高空间分辨率的MODIS数据降低到AIRS空间分辨率。 ,并且观察到的差异是几个参数的函数,包括场景温度,传感器扫描(视角)角和太阳天顶角。通常,相对于传感器的预期辐射精度,这些比较非常好,许多MODIS波段的平均亮度温度差为0.1 K或更小。这些确定的不确定性范围从窗口区域波段的0 K到其他波段的0.2 K大。对于MODIS水汽带27(6.8μm)和28(7.3μm)以及温度探测带34(13.7μm),35(13.9μm)和36(14.2μm)而言,差异表现出对场景温度的依赖性,峰值对于频带27和36,其差值超过1K。对于所有频带,作为扫描角的函数的差为0.4 K或更小,并且定义了扫描角,但趋势清晰。 2天的结果显示出良好的重现性,大多数谱带的平均差异变化为0.1 K或更小。

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