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Field Spectroscopy for Assisting Water Quality Monitoring and Assessment in Water Treatment Reservoirs Using Atmospheric Corrected Satellite Remotely Sensed Imagery

机译:利用大气校正卫星遥感影像协助水处理水库水质监测和评估的现场光谱

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The overall objective of this study was to use field spectro-radiometers for finding possible spectral regions in which chlorophyll-a (Chl-a) and particulate organic carbon (POC) could be identified so as to assist the assessment and monitoring of water quality using satellite remote sensing technology. This paper presents the methodology adopted in this study which is based on the application of linear regression analysis between the mean reflectance values (measured with the GER1500 field spectro-radiometer) across the spectrum and the concentrations of chlorophyll-a (µg/L) and POC (µg/L) acquired simultaneously on the same day and time in the Lower Thames Valley in West London (U.K.) from old campaigns. Each regression model (512 in total) corresponded to a measured wavelength of the GER1500 field spectro-radiometer. The achieved correlations presented as r2 against wavelength, indicate the regions with high correlation values for both water quality variables. Based on the results from this study and by matching the spectral bands of the field spectro-radiometer with those of the Landsat TM satellite sensor (or any other sensor), it has been found that suitable spectral regions for monitoring water quality in water treatment reservoirs are the following: for chlorophyll-a, the spectral region of 0.45–0.52 μm (TM band 1), and for POC, the region 0.52–0.60 μm (TM bands 1 and 2). Then 12 atmospheric corrected Landsat TM/ETM+ band 1 images acquired from 2001 to 2010 were used for validation purposes to retrieve the Chl-a concentrations.
机译:这项研究的总体目标是使用现场分光辐射计寻找可能的光谱区域,在其中可以识别出叶绿素-a(Chl-a)和有机碳颗粒(POC),以帮助评估和监测水质。卫星遥感技术。本文介绍了本研究采用的方法,该方法基于线性回归分析在整个光谱范围内的平均反射率值(使用GER1500场光谱辐射仪测量)与叶绿素a(µg / L)和POC(µg / L)是在同一天和同一时间在西伦敦(英国)的下泰晤士河谷中通过旧活动同时采集的。每个回归模型(总共512个)对应于GER1500现场光谱辐射仪的测量波长。 r 2 与波长之间的相关关系表示两个水质变量的相关值较高的区域。根据这项研究的结果,并通过将现场分光辐射仪的光谱带与Landsat TM卫星传感器(或任何其他传感器)的光谱带进行匹配,发现合适的光谱区域可用于监测水处理水库的水质如下:对于叶绿素a,光谱区域为0.45-0.52μm(TM波段1),对于POC,光谱区域为0.52-0.60μm(TM波段1和2)。然后使用2001年至2010年获得的12张经大气校正的Landsat TM / ETM +波段1图像进行验证,以检索Chl-a浓度。

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