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TOWARDS OPERATIONAL AIRBORNE REMOTE SENSING OF WATER QUALITY IN THE NETHERLANDS

机译:朝着荷兰水质的运营空气偏远感测

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Optical imaging techniques can be used to produce maps of concentrations of chlorophyll-a, total suspended matter and coloured dissolved organic carbon. The Rijkswaterstaat sets up a production chain for such maps using a hyperspectral imaging scanner installed in the Dutch coast guard aircraft. Multiple use of aircraft and scanner makes data acquisition more cost effective. Water quality parameters are retrieved from remote sensing images using successively; 1) A module that calculates subsurface reflectance spectra, it corrects for atmospheric and air-water interface effects using MODTRAN embedded in TOOLKIT. 2) A module that calculates concentrations of water constituents from the subsurface irradiance reflectance spectra and specific inherent optical properties using matrix inversion. Specific inherent optical properties of the water constituents are not necessarily simultaneous measured to the airborne measurements. Effects of instrumental noise, errors in the atmospheric correction and errors in the specific inherent optical properties on the derived concentrations of water constituents were estimated. An image was taken from Lake Veluwe in The Netherlands with complementary in situ measurements, including reflectance spectra and specific absorption and back scattering spectra of water constituents and concentrations of water constituents. The data were used to validate the system by 1) forward modelling of the reflectance spectra based on the Gordon model using a set of measured specific inherent optical properties, concentrations of the constituents and measured reflectance spectra, 2) comparison of the atmospheric corrected airborne measurements and reflectance spectra measured from a ship, and 3) comparison of the measured concentrations with the calculated concentrations.
机译:光学成像技术可用于产生叶绿素-A,总悬浮物和有色溶解的有机碳浓度的映射。 Rijkswaterstaat使用安装在荷兰海岸警卫队飞机中的高光谱成像扫描仪为这些地图设立了生产链。多次使用飞机和扫描仪使数据采集更具成本效益。从连续使用遥感图像检索水质参数; 1)计算地下反射光谱的模块,它可以使用嵌入工具包中的Modtran来校正大气和空气接口效果。 2)使用矩阵反转来计算来自地下辐照反射光谱和特定固有光学性质的水成分浓度的模块。水成分的特定固有光学性质不一定同时测量到空气中测量。估计仪器噪声,大气校正中的误差和水成分衍生浓度的特定固有光学性质的误差。从荷兰湖从威尔努威拍摄了一种图像,其中互补地测量,包括反射光谱和水成分的特定吸收和后散射光谱和水成分的浓度。该数据被用来验证由1系统)的基础上使用一组测量的比固有的光学特性,所述成分的浓度和测得的反射光谱的戈登模型向前建模的反射光谱的,2)与大气的比较校正空中测量和从船舶测量的反射光谱,3)测量浓度与计算浓度的比较。

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