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首页> 外文期刊>Environmental Research Letters >An improved analytical algorithm for remote estimation of chlorophyll-a in highly turbid waters
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An improved analytical algorithm for remote estimation of chlorophyll-a in highly turbid waters

机译:一种改进的解析算法,用于高度混浊水中的叶绿素a远程估算

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An analytical three-band algorithm for spectrally estimating chlorophyll-a (Chl-a) has been proposed recently and the model does not need to be trained. However, the model did not consider the effects of the absorption due to colored detritus matter (CDM) and backscattering of the water column, resulting in an overestimation when Chl-a < 50?mg?m ? 3 and an underestimation when Chl-a ≥ 50?mg?m ? 3. In this letter, an improved three-band algorithm is proposed by integrating both backscattering and CDM absorption coefficients into the model. The results demonstrate that the improved three-band model resulted in more accurate estimation of Chl-a than the previously used three-band model when they were applied to water samples collected from five highly turbid water bodies with Chl-a ranging from 2.54 to 285.8? mg?m ? 3. The best results, after model modification, were observed in three Indiana reservoirs with R2 = 0.905 and relative root mean square error of 20.7%, respectively.
机译:最近已经提出了一种用于光谱估计叶绿素a(Chl-a)的解析三频带算法,该模型无需训练。但是,该模型没有考虑由于有色碎屑物质(CDM)和水柱的反向散射而引起的吸收效应,导致当Chl-a <50?mg?m?时,过高估计。 3和当Chl-a≥50?mg?m?时被低估。 3.在这封信中,通过将反向散射和CDM吸收系数都集成到模型中,提出了一种改进的三频带算法。结果表明,当将改进的三波段模型应用于从五个浊度从2.54到285.8的五个高浊度水体中收集的水样时,与以前使用的三波段模型相比,对Chl-a的估计更加准确。 ?毫克?米3.模型修改后,在三个印第安纳州水库中观察到了最佳结果,R2 = 0.905,相对均方根误差为20.7 %。

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