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Assessment of stability of the response versus scan angle for the S-NPP VIIRS reflective solar bands using pseudo-invariant desert and Dome C sites

机译:使用伪不变沙漠和圆顶C站点评估S-NPP VIIRS反射太阳能频段的响应稳定性的稳定性

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The Visible Infrared Imaging Radiometer Suite (VIIRS) on the Suomi NPP (National Polar-orbiting Partnership) satellite has been in operation for over five years. VIIRS has 22 bands with a spectral range from 0.4 μm to 2.2 μm for the reflective solar bands (RSB). The Earth view swath covers a distance of ~3000 km over scan angles of ± 56.0° off nadir. The on-board calibration of the RSB relies on a solar diffuser (SD) located at a fixed scan angle and a solar diffuser stability monitor (SDSM). The response versus scan angle (RVS) was characterized prelaunch in ambient conditions and is currently used to determine the on-orbit response for all scan angles relative to the SD scan angle. Since the RVS is vitally important to the quality of calibrated level 1B products, it is important to monitor its on-orbit stability, particularly at the short wavelengths (blue) where the most degradation occurs. In this study, the RVS stability is examined based on reflectance trends collected at various scan angles over the selected pseudo-invariant desert sites in Northern Africa and the Dome C snow site in Antarctica. These trends are corrected by the site dependent BRDF (bi-directional reflectance function) model to reduce seasonally related fluctuations. The BRDF corrected trends are examined so any systematic drifts in the scan angle direction would indicate a potential change in RVS. The results of this study provide useful information on VIIRS RVS on-orbit stability performance.
机译:Suomi NPP(国家极地轨道合作伙伴关系)卫星的可见红外成像辐射计套件(VIIR)已经运行了五年多。 VIIRS具有22条带,光谱范围为0.4μm至2.2μm的反射太阳能带(RSB)。地球视图条带覆盖Nadir截止±56.0°的扫描角度〜3000公里的距离。 RSB的车载校准依赖于位于固定扫描角度的太阳漫射器(SD)和太阳漫射器稳定性监测器(SDSM)。响应与扫描角度(RV)在环境条件下表征预先生,并且当前用于确定相对于SD扫描角度的所有扫描角度的轨道响应。由于RV对校准水平1B产品的质量至关重要,因此监测其在轨道稳定性,特别是在发生最低降解的短波长(蓝色)上。在这项研究中,RVS稳定性是基于超过在北非和在南极冰穹C雪站点选择的伪不变的沙漠网站的各种扫描角度收集反射趋势检查。这些趋势由站点相关的BRDF(双向反射功能)模型来纠正,以减少季节性相关波动。 BRDF校正趋势被检查,因此扫描角方向中的任何系统漂移都将指示RVS的潜在变化。本研究的结果提供了关于VIIRS RVS On-Orbit稳定性性能的有用信息。

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