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Towards airborne remote sensing of water quality in The Netherlands―validation and error analysis

机译:荷兰机载水质遥感的验证与误差分析

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Water managers request maps of water quality parameters such as concentrations of dissolved organic matter (CDOM), chlorophyll or total suspended matter (TSM). Rijkswaterstaat sets up a production chain for such maps using a hyperspectral imaging scanner installed in the Dutch coast guard aircraft. Water quality parameters are retrieved from remote-sensed images using successively: (1) a module calculating the subsurface reflectance spectra and (2) a module calculating the concentrations using specific inherent optical properties (SIOP) of the water constituents and the Gordon reflectance model implemented in a matrix inversion technique. The accuracy of several numerical methods for retrieval of concentrations from reflectance spectra was assessed. Effects of instnimental noise, errors in the atmospheric correction and errors in the specific inherent optical properties on the derived concentrations were also estimated. A benchmark data set was collected for Lake Veluwe in the Netherlands. For ideal circumstances, two of the tested numerical methods were able to retrieve both total suspended matter as well as chlorophyll concentration. For less favourable circumstances, total suspended matter could still be retrieved, but chlorophyll became less accurate. Dissolved organic matter concentrations could not be retrieved for any case. Application of the matrix inversion technique tested on an airborne image from Lake Veluwe showed promising results.
机译:水管理者要求提供水质参数图,例如溶解性有机物(CDOM),叶绿素或总悬浮物(TSM)的浓度。 Rijkswaterstaat使用安装在荷兰海岸警卫队飞机上的高光谱成像扫描仪建立了此类地图的生产链。依次使用以下方法从遥感图像中检索水质参数:(1)计算地下反射光谱的模块,(2)使用水成分的特定固有光学特性(SIOP)和实现的Gordon反射模型计算浓度的模块在矩阵求逆技术中。评估了几种从反射光谱中检索浓度的数值方法的准确性。还估算了仪器噪声,大气校正误差和特定固有光学特性误差对所导出浓度的影响。收集了荷兰维鲁威湖的基准数据集。在理想情况下,两种测试的数值方法能够提取总悬浮物以及叶绿素浓度。在不利的情况下,总悬浮物仍可回收,但叶绿素的准确度降低。在任何情况下都无法获取溶解的有机物浓度。在维卢韦湖的机载图像上测试的矩阵求逆技术的应用显示出令人鼓舞的结果。

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