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Effect of bio-optical parameter variability and uncertainties in reflectance measurements on the remote estimation of chlorophyll-a concentration in turbid productive waters: modeling results

机译:生物光学参数变异性和反射率测量中的不确定性对浊度生产水中叶绿素a浓度的远程估计的影响:建模结果

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摘要

Most algorithms for retrieving chlorophyll-a concentration (Chla) from reflectance spectra assume that bio-optical parameters such as the phytoplankton specific absorption coefficient (a_(phi~(*)) or the chlorophyll-a fluorescence quantum yield (eta) are constant. Yet there exist experimental data showing large ranges of variability for these quantities. The main objective of this study was to analyze the sensitivity of two Chla algorithms to variations in bio-optical parameters and to uncertainties in reflectance measurements. These algorithms are specifically designed for turbid productive waters and are based on red and near-infrared reflectances. By means of simulated data, it is shown that the spectral regions where the algorithms are maximally sensitive to Chla overlap those of maximal sensitivity to variations in the above bio-optical parameters. Thus, to increase the accuracy of Chla retrieval, we suggest using spectral regions where the algorithms are less sensitive to Chla, but also less sensitive to these interferences. a_(phi~(*)) appeared to be one of the most important sources of error for retrieving Chla. However, when the phytoplankton backscattering coefficient (b_(b,phi)) dominates the total backscattering, as is likely during algal blooms, variations in the specific b_(b,phi) may introduce large systematic uncertainties in Chla estimation. Also, uncertainties in reflectance measurements, which are due to incomplete atmospheric correction or reflected skylight removal, seem to affect considerably the accuracy of Chla estimation. Instead, variations in other bio-optical parameters, such as eta or the specific backscattering coefficient of total suspended particles, appear to have minor importance. Suggestions regarding the optimal band locations to be used in the above algorithms are finally provided.
机译:从反射光谱中检索叶绿素a浓度(Chla)的大多数算法都假定生物光学参数(例如浮游植物比吸收系数(a_(phi〜(*))或叶绿素a荧光量子产率(eta))是恒定的。然而,已有实验数据表明这些量的大范围可变性,本研究的主要目的是分析两种Chla算法对生物光学参数变化和反射率测量不确定度的敏感性,这些算法是专为混浊而设计的。通过模拟数据显示,算法对Chla的最大敏感光谱区域与对上述生物光学参数的变化最大敏感的光谱区域重叠。 ,为了提高Chla检索的准确性,我们建议在算法对Chla,b不那么敏感的情况下使用频谱区域对这些干扰也不太敏感。 a_(phi〜(*))似乎是检索Chla的最重要错误来源之一。但是,当浮游植物的背向散射系数(b_(b,phi))占总背向散射的优势时(如藻华期间可能发生的情况),特定b_(b,phi)的变化可能会在Chla估计中引入较大的系统不确定性。同样,由于大气校正不完全或反射的天窗去除而导致的反射率测量不确定性似乎会显着影响Chla估算的准确性。相反,其他生物光学参数(例如eta或总悬浮颗粒的特定反向散射系数)的变化似乎没有那么重要。最后提供了有关在上述算法中使用的最佳频带位置的建议。

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  • 来源
    《Applied Optics》 |2006年第15期|p.3577-3592|共16页
  • 作者单位

    Center for Advanced Land Management Information Technologies, School of Natural Resources, University of Nebraska-Lincoln, 102 Nebraska Hall, Lincoln, Nebraska 68588-0517;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;
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