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Improvement in the cloud mask for Terra MODIS mitigated by electronic crosstalk correction in the 6.7 μm and 8.5 μm channels

机译:通过6.7μm和8.5μm通道中的电子串扰校正减轻了Terra Terra的云遮罩的改进

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摘要

MODerate resolution Imaging Spectroradiometer (MODIS), a remarkable heritage sensor in the fleet of Earth Observing System for the National Aeronautics and Space Administration (NASA) is in space orbit on two spacecrafts. They are the Terra (T) and Aqua (A) platforms which tracks the Earth in the morning and afternoon orbits. T-MODIS has continued to operate over 15 years easily surpassing the 6 year design life time on orbit. Of the several science products derived from MODIS, one of the primary derivatives is the MODIS Cloud Mask (MOD035). The cloud mask algorithm incorporates several of the MODIS channels in both reflective and thermal infrared wavelengths to identify cloud pixels from clear sky. Two of the thermal infrared channels used in detecting clouds are the 6.7 μrn and 8.5 urn. Based on a difference threshold with the 11 μm channel, the 6.7 μm channel helps in identifying thick high clouds while the 8.5 μm channel being useful for identifying thin clouds. Starting 2010, it had been observed in the cloud mask products that several pixels have been misclassified due to the change in the thermal band radiometry. The long-term radiometric changes in these thermal channels have been attributed to the electronic crosstalk contamination. In this paper, the improvement in cloud detection using the 6.7 μm and 8.5 urn channels are demonstrated using the electronic crosstalk correction. The electronic crosstalk phenomena analysis and characterization were developed using the regular moon observation of MODIS and reported in several works. The results presented in this paper should significantly help in improving the MOD035 product, maintaining the long term dataset from T-MODIS which is important for global change monitoring.
机译:现代分辨率成像光谱仪(MODIS)是美国国家航空航天局(NASA)的地球观测系统机群中的杰出遗产传感器,目前正在两架航天器上进入太空轨道。它们是Terra(T)和Aqua(A)平台,可在早晨和下午的轨道上跟踪地球。 T-MODIS已经连续运行了15年,轻松超过了6年的设计使用寿命。在从MODIS派生的几种科学产品中,主要派生产品之一是MODIS Cloud Mask(MOD035)。云掩模算法结合了反射和热红外波长中的多个MODIS通道,以识别晴朗天空中的云像素。用于探测云的两个红外热通道分别为6.7μrn和8.5 urn。基于与11μm通道的差异阈值,6.7μm通道有助于识别厚厚的高云,而8.5μm通道可用于识别薄云。从2010年开始,在云掩模产品中已经观察到由于热带辐射度的变化,几个像素被错误分类。这些热通道的长期辐射变化已归因于电子串扰污染。在本文中,通过电子串扰校正显示了使用6.7μm和8.5 urn通道进行云检测的改进。电子串扰现象的分析和表征是使用MODIS的常规月球观测进行的,并在几篇著作中进行了报道。本文中提出的结果将极大地帮助改进MOD035产品,保持T-MODIS的长期数据集,这对于全球变化监测至关重要。

著录项

  • 来源
    《Earth observing systems XXI》|2016年|99720Z.1-99720Z.8|共8页
  • 会议地点 San Diego CA(US)
  • 作者

    J. Sun; S. Madhavan; M. Wang;

  • 作者单位

    NOAA National Environmental Satellite, Data, and Information Service, Center for Satellite Applications and Research, E/RA3, College Park, Maryland, USA,Global Science and Technology, Greenbelt, Maryland, USA;

    NOAA National Environmental Satellite, Data, and Information Service, Center for Satellite Applications and Research, E/RA3, College Park, Maryland, USA,Science Systems and Applications Inc., Lanham, Maryland, USA;

    NOAA National Environmental Satellite, Data, and Information Service, Center for Satellite Applications and Research, E/RA3, College Park, Maryland, USA;

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

    MODIS; Terra; MOD035; Cloud detection; Electronic crosstalk; Thermal emissive bands;

    机译:MODIS; Terra; MOD035;云检测;电子串扰;热发射带;

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