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Preliminary Study of JPSS-1/NOAA-20 VIIRS Day-Night Band Straylight Characterization and Correction Methods

机译:JPSS-1 / NOAA-20 VIIRS夜频带杂散光表征和校正方法的初步研究

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The JPSS-1 (now named NOAA-20) VIIRS instrument has successfully operated since its launch in November 18, 2017. A panchromatic channel onboard NOAA-20 VIIRS is called the day-night band (DNB). With its large dynamic range and high sensitivity, the DNB detectors can make observations during both daytime and nighttime. However, the DNB night image quality is affected by the straylight contamination. In this study, we focused on Earth view data in the mid-to-high latitude of the northern and southern hemispheres when spacecraft is crossing the dayight terminators at the beginning of NOAA-20 mission. Based on on-orbit data analysis from previous VIIRS sensor onboard S-NPP mission, straylight contamination mainly depends on the Earth-Sun-spacecraft geometry, and it is also detector and scan-angle dependent. Inter-comparison investigation of straylight behavior in both SNPP and NOAA-20 instruments will be conducted to better understand straylight characteristics. The preliminary study has been performed in this paper to mitigate straylight contamination for NOAA-20VIIRS DNB night images. The effectiveness of the straylight correction algorithm, directly adapted from the S-NPP DNB, is assessed for night images in the dayight terminators. Further work has been identified to improve current straylight correction methodology and DNB-based environmental data products.NOAA-20.
机译:JPSS-1(现称为NOAA-20)VIIRS仪器自2017年11月18日发射以来已成功运行。NOAA-20VIIRS上的全色通道称为昼夜波段(DNB)。 DNB检测器具有大的动态范围和高灵敏度,可以在白天和晚上进行观察。但是,DNB夜间图像质量受杂散光污染的影响。在这项研究中,当NOAA-20任务开始时航天器越过昼/夜终结者时,我们集中在北半球和南半球中高纬度的地球观测数据。根据先前的VIIRS传感器在S-NPP任务上进行的在轨数据分析,杂散光污染主要取决于Earth-Sun-航天器的几何形状,并且还与探测器和扫描角度有关。将对SNPP和NOAA-20仪器中的杂散光行为进行比对调查,以更好地了解杂散光特性。为了减轻NOAA-20VIIRS DNB夜间图像的杂散光污染,本文进行了初步研究。直接从S-NPP DNB改编的杂散光校正算法的有效性,针对白天/夜晚终结者中的夜晚图像进行了评估。已经确定了进一步的工作来改进当前的杂散光校正方法和基于DNB的环境数据产品NOAA-20。

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