Atmospheric Profile Retrievals Using Grating and Interferometer Infrared and Microwave Measurements

H. Huang, W. Smith, M. S. Whipple
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Abstract

Infrared radiance spectra measured by grating and interferometer devices will be widely available in the EOS (Earth Observing System) and NPOESS (National Polar Orbiting Environmental Satellite System) era. The future European polar satellite system, METOP, is scheduled to carry an interferometer to obtain infrared spectra. The Japanese satellite ADEOS (Advanced Earth Observing Satellite) launched on August 16, 1996 is also carrying an interferometer capable of measuring infrared spectra. These future infrared measurements will all possess spectral resolutions of better than 1 cm-1 and have quasi-continuous spectral coverage in the 3 μm ~ 15 μm region. With nearly thousands of spectra measurements at any single field of view, it is important to develop an innovative retrieval algorithm which cannot only handle a large volume of measurements but can also yield high precision sounding profiles.
利用光栅和干涉仪红外和微波测量反演大气剖面
在地球观测系统(EOS)和国家极轨环境卫星系统(NPOESS)时代,通过光栅和干涉仪设备测量的红外辐射光谱将得到广泛应用。未来的欧洲极地卫星系统METOP计划携带一个干涉仪来获取红外光谱。1996年8月16日发射的日本卫星ADEOS(先进地球观测卫星)也携带一台能够测量红外光谱的干涉仪。这些未来的红外测量都将具有优于1 cm-1的光谱分辨率,并且在3 μm ~ 15 μm区域具有准连续光谱覆盖。在任何单一视场都有近数千个光谱测量,因此开发一种创新的检索算法非常重要,该算法不仅可以处理大量测量数据,还可以产生高精度的探测剖面。
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