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NOAA-20 VIIRS polarization effect and its correction

机译:NOAA-20 VIIRS极化效果及其矫正

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摘要

The follow-on Visible Infrared Imaging Radiometer Suite (VIIRS) housed in the NOAA-20 satellite was launched on 18 November 2017. It has 22 spectral bands, among which 14 are reflective solar bands (RSBs) covering the wavelength range from 411 to 2258 nm. Prelaunch polarization sensitivity measurements have revealed that NOAA-20 VIIRS RSBs are much more sensitive to polarization of the incident light than its predecessor, the VIIRS on the Suomi National Polar-orbiting Partnership. For the short wavelength bands, i.e., M1-M4, the polarization sensitivities are out of specifications, especially for band M1, for which the polarization factors can be as large as similar to 6%. The polarization effect induces striping in imagery along the track and radiometric bias both along the scan and along the track, resulting in much larger uncertainties in the environmental data records (EDR). In this paper, the polarization effect correction algorithms are described and applied to the NOAA-20 VIIRS RSBs for ocean scenes where the top-of-atmosphere radiance can be separated into the ocean normalized water-leaving radiance, the basis of the ocean color EDR, and the sunlight reflected by the atmosphere, which can be mostly described by the Rayleigh scattering radiance. The errors of the sensor data records (SDR or Level-1B radiance) due to the polarization effect can be as large as similar to 1% for bands M1 and M2, and those in the ocean normalized water-leaving radiances are about 13% and 10% for wavelengths at 411 nm (band M1) and 445 nm (band M2), respectively. The polarization effect also induces strong striping in both NOAA-20 VIIRS RSB SDR and normalized water-leaving radiances. It is demonstrated that with the polarization correction applied, the aforementioned errors and artifacts are successfully removed. (C) 2019 Optical Society of America
机译:在2017年11月18日启动了Noaa-20卫星的后续可见红外成像辐射计套件(VIIR)。它有22个光谱带,其中14个是覆盖411至2258的波长范围的反射太阳能带(RSB) nm。预前偏振敏感性测量揭示了NOAA-20 VIIRS RSBS对事件光的极化比其前身更敏感,VIIR在苏米国家极性轨道伙伴关系上的viirs。对于短波长带,即M1-M4,偏振敏感性超出规格,特别是对于带M1,偏振因子可以与6%相似。偏振效果沿着扫描和沿轨道沿着轨道和辐射偏压引发图像的条带,导致环境数据记录(EDR)中的更大的不确定性。在本文中,描述了偏振效应校正算法,并应用于NOAA-20 VIIRS RSBS,用于海洋场景,在那里,大气层辐射可以分离为海洋归一化的留下辐射,海洋彩色EDR的基础。并且由大气反射的阳光,其可以由瑞利散射光线描述。由于偏振效应导致的传感器数据记录(SDR或LEVER-1B RADIACE)的误差可以与带M1和M2的1%相似,并且海洋归一化的水留下面条中的误差约为13%和在411nm(带M1)和445nm(带M2)的波长分别为10%。偏振效果还在NOAA-20 VIIRS RSB SDR中诱导强条纹,并归一化水留下来。据证明,利用偏振校正,成功地去除了上述误差和伪像。 (c)2019年光学学会

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  • 来源
    《Applied optics》 |2019年第24期|共11页
  • 作者单位

    Sci Syst &

    Applicat Inc 10210 Greenbelt Rd Lanham MD 20706 USA;

    NOAA Natl Environm Satellite Data &

    Informat Serv Ctr Satellite Applicat &

    Res E RA3 5830 Univ Res Ct College Pk MD 20740 USA;

    NOAA Natl Environm Satellite Data &

    Informat Serv Ctr Satellite Applicat &

    Res E RA3 5830 Univ Res Ct College Pk MD 20740 USA;

    NASA Sci Explorat Directorate GSFC Greenbelt MD 20771 USA;

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