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Recent checks on the radiometric and spatial calibration of AIRS in-orbit

机译:最近检查轨道空气辐射和空间校准

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The Atmospheric Infrared Sounder (AIRS) on the EOS Aqua Spacecraft was launched on May 4, 2002 and is currently fully operational. AIRS acquires hyperspectral infrared radiances in 2378 channels ranging in wavelength from 3.7.15.4 um with spectral resolution of better than 1200, and spatial resolution of 13.5 km with global daily coverage. The AIRS was designed to measure temperature and water vapor profiles for improvement in weather forecast and improved parameterization of climate processes. Currently the AIRS Level IB Radiance Products are assimilated by NWP centers worldwide and have shown considerable forecast improvement. Although the calibration of AIRS (< 200 mK 3 sigma) is sufficient for data assimilation into Numerical Weather Prediction (NWP) models, long term trends of Earth's climate require radiances with stability approaching 10 mK/year, and absolute accuracies better than 100 mK. This investigation uses views of space during roll maneuvers of the Aqua spacecraft to calibrate the mirror emission (one of the largest error sources for AIRS) and reduce the residual errors in cold scenes. We also present results of a secondary study that uses MODIS data to determine the alignment of the AIRS boresight. In this study we match AIRS and MODIS data and iterate on the assumed boresight to find the minimum difference in signal. In this way we are able to confirm the boresight projections determined shortly after launch.
机译:EOS Aqua SpaceCraft上的大气红外声探测器(Airs)于2002年5月4日推出,目前正在全面运营。 Airs在2378个通道中获取高光谱红外线,从3.7.15.4 um的波长范围内,光谱分辨率优于1200,并且空间分辨率为13.5公里,全球日常覆盖率。设计用于测量温度和水蒸气谱,以改善天气预报和改进气候过程的参数化。目前AIRS Level IB Radiance产品由全球NWP中心同化,并显示出相当大的预测改进。虽然空气(<200 mk 3 sigma)的校准足以进行数据同化到数值天气预报(NWP)模型,但地球气候的长期趋势需要稳定的稳定性达到10毫克/年,而绝对的精度优于100 mk。本调查在Aqua SpaceCraft的滚动机动期间使用空间的视图,以校准镜子排放(空中最大的误差源之一),并降低冷场中的残余错误。我们还存在次要研究的结果,该研究使用MODIS数据来确定Airs Borsight的对准。在这项研究中,我们匹配Airs和Modis数据并迭代假定的光程,以找到信号的最小差异。通过这种方式,我们能够确认在发布后不久确定的模糊投影。

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