首页> 外文会议>Conference on Algorithms, Technologies, and Applications for Multispectral and Hyperspectral Imaging >Terra MODIS sees solar eclipses: Analysis of reflective solar band response at multiple radiance levels
【24h】

Terra MODIS sees solar eclipses: Analysis of reflective solar band response at multiple radiance levels

机译:Terra Modis看到太阳蚀:分析了多个辐射电平的反射太阳能带响应

获取原文

摘要

The MODIS imaging spectroradiometer instruments on-board NASA's Terra and Aqua satellites have 20 reflective solar bands (RSB) covering a wavelength range from 400 to 2200 nm. Radiance is calculated from processing raw signals with background, temperature, and electronic contamination corrected. Measured gain is calibrated with a fully Sunlit solar diffuser (SD) at a stable radiance level, considering a slowly changing SD reflectance degradation. These measurements provide time-dependent gain adjustment factors, and the calibration assumes a linear response for each band and detector. Hence, an analysis of the dependence on different radiance levels is warranted. The MODIS design has no mechanism for varying radiance levels, except for an attenuator screen. However, it has been in static configuration for Terra since mid-2003. An external source of radiance attenuation can be utilized during solar eclipse events, while maintaining high stability and accuracy of solar calibration standards. Due to its long mission lifetime, Terra has seen several Sun-Moon near-conjunction events when it coincides with the orbit path where the SD is directly illuminated. As of August 2020, we have identified 7 viable partial solar eclipses in the Terra mission data. We will discuss several results of our study, including comparison of measured SD signal to predicted radiance reduction based on a solar disk radiance model; nominal and outlier behavior as a function of bands, detectors, and mirror-sides; and comparison with other data sets. Our main conclusion from this study is that there is no notable correlation of detector-dependent trend with radiance level for most RSB bands.
机译:Modis成像光谱仪器仪表板NASA的Terra和Aqua卫星具有20个反射太阳能带(RSB),覆盖400至2200nm的波长范围。从加工校正的后台,温度和电子污染的原始信号计算辐射。考虑到缓慢改变的SD反射率降解,用稳定的辐射水平校准测量的增益。这些测量提供了时间相关的增益调整因子,并且校准为每个频带和检测器带来线性响应。因此,有必要分析对不同辐射电平的依赖。除衰减器屏幕外,MODIS设计没有针对变化的辐射电平的机制。但是,自2003年中期以来,它一直符合Terra的静态配置。在日食事件期间,可以使用外部辐射衰减来源,同时保持太阳校准标准的高稳定性和准确性。由于其长期使用寿命,Terra在与直接照明的轨道路径一致的轨道路径一致时,Terra已经看到了几个阳光近的联合事件。截至2020年8月,我们已在Terra任务数据中确定了7个可行的部分太阳味。我们将讨论我们研究的几个结果,包括基于太阳能磁盘光辐射模型对测量的SD信号进行测量的SD信号的比较;标称和异常行为作为频带,探测器和镜面的函数;并与其他数据集进行比较。我们从本研究的主要结论是,对于大多数RSB频段,没有显着的探测器依赖趋势与辐射水平没有显着相关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号