首页> 外文会议>Earth observing systems XVIII >On the Potential to Enhance the Spatial Resolution of the Day/Night Band (DNB) Channel of the Visible and Infrared Imaging Radiometer Suite (VIIRS) for the Second Joint Polar Satellite System (JPSS-2) and Beyond
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On the Potential to Enhance the Spatial Resolution of the Day/Night Band (DNB) Channel of the Visible and Infrared Imaging Radiometer Suite (VIIRS) for the Second Joint Polar Satellite System (JPSS-2) and Beyond

机译:关于提高第二个联合极地卫星系统(JPSS-2)及以后的可见光和红外成像辐射计套件(VIIRS)的日/夜频带(DNB)通道空间分辨率的潜力

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摘要

This paper examines the feasibility and potential benefits of enhancing the spatial resolution of the VIIRS DNB channel for the JPSS-2 mission and beyond, by modifying the on-chip pixel binning recipe used in the DNB CCD to aggregate detector area within the scan swath. Presently the DNB delivers 16 cross-scan samples similar in size to the detectors in the VIIRS Moderate Resolution Bands. The relatively low-cost enhancement proposed would instead bin the pixels of the existing DNB CCD into 32 cross-scan samples, each half as large in track and scan, effectively doubling the spatial resolution of DNB in each dimension to match the VIIRS Imaging Bands at nadir. Other potential benefits include, for unresolved point sources, improved detection sensitivity and SNR. Smaller DNB image pixels would be less spatially-mixed, and therefore better suited to many quantitative analyses. DNB geolocation accuracy would also benefit from the increased spatial resolution, but less so for regions approaching edge-of-scan. To implement the maximum DNB spatial resolution enhancement over the full cross-track scan swath would require design and hardware modifications to the focal plane electronics (FPIE) to increase certain CCD clock rates. This paper explores the performance of this option, alongside other options that (if constrained to use the existing FPIE design with minimal changes) would not provide the enhanced DNB spatial resolution all the way out to the edges of the cross-track scan. These would instead offer other benefits, such as better maintaining SNR to edge-of-scan and, if away from nadir DNB sampling matched the I-bands, better enabling future environmental products merging the enhanced DNB data with existing VIIRS spectral band data.
机译:本文研究了通过修改DNB CCD中使用的片上像素合并配方以汇总扫描条带内的检测器区域来增强JPSS-2任务及更高水平的VIIRS DNB通道的空间分辨率的可行性和潜在优势。目前,DNB提供16个交叉扫描样本,其大小类似于VIIRS中分辨率带中的检测器。提议的相对低成本的增强功能将取而代之的是将现有DNB CCD的像素分为32个交叉扫描样本,每个样本在跟踪和扫描中的大小都是原来的一半,有效地使DNB在每个维度上的空间分辨率加倍,以匹配VIIRS成像波段。天底对于未解决的点源,其他潜在的好处包括提高了检测灵敏度和SNR。较小的DNB图像像素在空间上的混合较少,因此更适合许多定量分析。 DNB地理定位的准确性也将从提高的空间分辨率中受益,但对于接近扫描边缘的区域而言则更少。为了在整个交叉轨迹扫描范围内实现最大的DNB空间分辨率增强,将需要对焦平面电子设备(FPIE)进行设计和硬件修改,以增加某些CCD时钟速率。本文探讨了该选项的性能,以及其他选项(如果限制使用现有的FPIE设计而进行的最小更改)将无法一直提供增强的DNB空间分辨率,直至跨轨扫描的边缘。相反,它们将提供其他好处,例如更好地将SNR保持在扫描边缘,并且如果远离最低点DNB采样与I波段匹配,则可以更好地使将来的环境产品将增强的DNB数据与现有VIIRS频谱数据合并。

著录项

  • 来源
    《Earth observing systems XVIII》|2013年|88661Q.1-88661Q.14|共14页
  • 会议地点 San Diego CA(US)
  • 作者单位

    Stellar Solutions, Inc., 250 Cambridge Avenue, Suite 204, Palo Alto, CA 94306;

    Raytheon Space and Airborne Systems, 2000 E. El Segundo Blvd., El Segundo, CA 90245;

    Raytheon Space and Airborne Systems, 2000 E. El Segundo Blvd., El Segundo, CA 90245;

    Raytheon Space and Airborne Systems, 2000 E. El Segundo Blvd., El Segundo, CA 90245;

    SRI International, 201 Washington Road, Princeton, NJ 08540;

    Stellar Solutions, Inc., 250 Cambridge Avenue, Suite 204, Palo Alto, CA 94306;

    NOAA National Geophysical Data Center, 325 Broadway St., Boulder, CO 80305;

    Cooperative Institute for Research in the Atmosphere, Colorado St. Univ., Fort Collins, CO 80523;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    JPSS; VIIRS; Day-Night Band (DNB); Spatial Resolution;

    机译:JPSS; VIIRS;昼夜波段(DNB);空间分辨率;

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