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The Impact Of the AIRS Spatial Response On Channel-To-Channel and Multi-Instrument Data Analyses

机译:AIRS空间响应对通道间和多仪器数据分析的影响

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The Atmospheric Infrared Sounder (AIRS) measures the infrared spectrum in 2378 channels between 3.7 and 15.4 microns with a very high spectral resolution of approximately 1200. AIRS footprints are approximately 1.1 by 0.6 degrees. Because AIRS is a grating spectrometer, each channel has a unique spatial response. Image rotation due to the scan mirror causes these spatial responses to rotate. In effect, each channel has 90 spatial responses, one for each scene footprint in the scan line. Although the spatial response for most channels is symmetric and nearly uniform, some channels have significantly asymmetric response. This paper reviews and describes the prelaunch measurements that characterized the spatial response functions. Next, it describes the conversion of the ground-based results into footprint-specific response functions valid in flight. Then we describe the postlaunch validation of the measurements, including centroid location, axes orientations, and a check on the full two-dimensional response functions. This latter check involves comparison of AIRS data with that of the Moderate Resolution Imaging Spectrometer (MODIS), which flies on the same platform as AIRS. An important result is that AIRS/MODIS brightness temperature comparisons are significantly improved (scatter reduced) when the AIRS spatial response is explicitly taken into account. Finally, a status report is given on attempts to fully verify the prelaunch measurements by deriving the AIRS spatial response from flight data alone.
机译:大气红外测深仪(AIRS)可测量3.7到15.4微米之间的2378个通道中的红外光谱,具有大约1200的非常高的光谱分辨率。AIRS足迹大约为1.1 x 0.6度。因为AIRS是光栅光谱仪,所以每个通道都具有唯一的空间响应。由于扫描镜引起的图像旋转导致这些空间响应旋转。实际上,每个通道具有90个空间响应,其中一个对应于扫描线中每个场景的足迹。尽管大多数通道的空间响应是对称且几乎均匀的,但某些通道的响应却明显不对称。本文回顾并描述了表征空间响应函数的发射前测量。接下来,它描述了将地面结果转换为在飞行中有效的特定于足迹的响应函数的过程。然后,我们描述测量的启动后验证,包括质心位置,轴方向以及对完整的二维响应函数的检查。后面的检查涉及将AIRS数据与中分辨率成像光谱仪(MODIS)进行比较,后者与AIRS使用同一平台。一个重要的结果是,当明确考虑AIRS空间响应时,可以显着改善AIRS / MODIS亮度温度比较(减少散射)。最后,给出一份状态报告,说明试图通过仅从飞行数据中得出AIRS空间响应来完全验证发射前的测量结果。

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