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Use of hyperspectral remote sensing reflectance for detection and assessment of the harmful alga, Karenia brevis

机译:利用高光谱遥感反射比检测和评估有害藻类

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摘要

We applied two numerical methods to in situ hyperspectral measurements of remote sensing reflectance R-rs to assess the feasibility of remote detection and monitoring of the toxic dinoflagellate, Karenia brevis, which has been shown to exhibit unique absorption properties. First, an existing quasi-analytical algorithm was used to invert remote sensing reflectance spectra, R-rs(lambda), to derive phytoplankton absorption spectra, alpha(Rrs)(phi)(lambda). Second, the fourth derivatives of the a alpha(Rrs)(phi)(lambda) spectra were compared to the fourth derivative of a reference K. brevis absorption spectrum by means of a similarity index (SI) analysis. Comparison of reflectance-derived a. with filter pad measured a, found them to agree well (R-2 = 0.891; average percentage difference, 22.8%). A strong correlation (R-2 = 0.743) between surface cell concentration and the SI was observed, showing the potential utility of SI magnitude as an indicator of bloom strength. A sensitivity analysis conducted to investigate the effects of varying levels of cell concentrations and colored dissolved organic matter (CDOM) on the efficacy of the quasi-analytical algorithm and SI found that alpha(Rrs)(phi)(lambda) could not be derived for very low cell concentrations and that, although it is possible to derive aR"(X) in the presence of high CDOM concentrations, CDOM levels influence the alpha(Rrs)(phi)(lambda) amplitude and shape. Results suggest that detection and mapping of K. brevis blooms based on hyperspectral measurements of R-rs are feasible.
机译:我们应用了两种数值方法对遥感反射率R-rs进行原位高光谱测量,以评估对有毒的鞭毛藻(Karenia brevis)进行远程检测和监测的可行性,该方法已显示出独特的吸收特性。首先,使用现有的拟分析算法对遥感反射光谱R-rs(lambda)进行反演,以得出浮游植物吸收光谱alpha(Rrs)Φ(lambda)。其次,通过相似性指数(SI)分析,将α(Rrs)Φλ光谱的四阶导数与参考短小K. brevis吸收光谱的四阶导数进行比较。反射率比较a。用滤垫测量a,发现它们吻合得很好(R-2 = 0.891;平均百分比差为22.8%)。观察到表面细胞浓度与SI之间有很强的相关性(R-2 = 0.743),显示出SI强度可作为水华强度的指标。进行敏感性分析以研究不同浓度的细胞浓度和有色溶解性有机物(CDOM)对准分析算法和SI功效的影响,发现无法得出α(Rrs)Φ(λ)。细胞浓度非常低,尽管可以在高CDOM浓度下获得aR“(X),但是CDOM水平会影响alpha(Rrs)(phi)(λ)的幅度和形状。结果表明检测和作图基于R-rs的高光谱测量法进行的K. brevis绽放的分析是可行的。

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