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New Algorithm for MODIS chlorophyll Fluorescence Height Retrieval: performance and comparison with the current product

机译:MODIS叶绿素荧光高度检索的新算法:性能和与当前产品的比较

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摘要

Our previous studies showed that the Fluorescence Line Height (FLH) product, which uses 3 NIR bands at 667, 678, and 746 nm on the MODerate-resolution Imaging Spectroradiometer (MODIS) sensor, and similar bands on MERIS sensor, is not reliable in coastal waters because of a peak in the elastic reflectance spectra which occurs due to the confluence of chlorophyll and water absorption spectra and which overlaps spectrally the chlorophyll fluorescence. This combination of two overlapping peaks makes fluorescence signal retrieval inaccurate. As a consequence, the present FLH algorithm significantly underestimates fluorescence magnitudes in coastal waters. To overcome this problem, we introduce a new and more accurate approach for the retrieval of FLH in turbid waters by the MODIS sensor, which exploits the correlation between the blue-green and red bands reflectance ratios. We show that by making use of the combined remote sensing reflectance's (Rrs) at 488nm, 547nm, 667nm and 678nm we can retrieve fluorescence accurately in case 2 waters even for low fluorescence quantum yield when fluorescence magnitudes are low. The derivation and validation of our algorithm was performed using extensive synthetic datasets which cover a large variability of parameters typical of coastal waters: with CDOM absorption at 400nm 0-2 m~(-1), mineral concentration 0-5g/m3 and chlorophyll concentration of 0.5-100 mg/m~3. In addition, we applied this proposed algorithm to MODIS satellite data and compared it with the traditional FLH algorithm.
机译:我们以前的研究表明,荧光线高度(FLH)产品在MODerate分辨率成像光谱仪(MODIS)传感器上使用3个NIR波段,分别在667、678和746 nm处,而MERIS传感器上使用类似的波段,在沿海水域是由于弹性反射光谱中的一个峰,该峰是由于叶绿素和吸水光谱的合流而出现的,并且在光谱上与叶绿素荧光重叠。两个重叠峰的组合使得荧光信号检索不准确。结果,当前的FLH算法大大低估了沿海水域的荧光强度。为了克服这个问题,我们引入了一种新的,更精确的方法,该方法通过MODIS传感器检索混浊水中的FLH,该方法利用了蓝绿色和红色波段反射率之间的相关性。我们表明,通过利用488nm,547nm,667nm和678nm处的组合遥感反射率(Rrs),即使在荧光量较低时,即使在低荧光量子产率的情况下,也可以在2种水域中准确地检索荧光。我们算法的推导和验证是使用广泛的综合数据集进行的,该数据集涵盖了沿海水域典型参数的较大差异:CDOM在400nm处吸收0-2 m〜(-1),矿物质浓度0-5g / m3和叶绿素浓度0.5-100 mg / m〜3。另外,我们将该算法应用于MODIS卫星数据,并与传统的FLH算法进行了比较。

著录项

  • 来源
  • 会议地点 Berlin(DE)
  • 作者单位

    Optical Remote Sensing Laboratory, Department of Electrical Engineering, The City College of the City University of New York, New York, NY, 10031;

    rnOptical Remote Sensing Laboratory, Department of Electrical Engineering, The City College of the City University of New York, New York, NY, 10031;

    rnOptical Remote Sensing Laboratory, Department of Electrical Engineering, The City College of the City University of New York, New York, NY, 10031;

    rnOptical Remote Sensing Laboratory, Department of Electrical Engineering, The City College of the City University of New York, New York, NY, 10031;

    rnOptical Remote Sensing Laboratory, Department of Electrical Engineering, The City College of the City University of New York, New York, NY, 10031;

    rnOptical Remote Sensing Laboratory, Department of Electrical;

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

    fluorescence; retrieval; phytoplankton; CDOM; coastal waters;

    机译:荧光恢复;浮游植物CDOM;沿海水域;

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