首页> 外文会议>2010 IEEE International Geoscience and Remote Sensing Symposium >Modification of SeaDAS SWIR atmospheric correction scheme for accurate retrieval of NIR remote sensing reflectance in the river delta regions of the world
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Modification of SeaDAS SWIR atmospheric correction scheme for accurate retrieval of NIR remote sensing reflectance in the river delta regions of the world

机译:修改SeaDAS SWIR大气校正方案以准确获取世界河流三角洲地区的NIR遥感反射率

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摘要

Coastal waters in the vicinity of the river delta regions of the world are characterized by significant concentrations of suspended sediments. To estimate the water sediment load from satellite observations, an important step is to accurately remove the optical effects of the intervening atmosphere. The NASA SeaDAS code has been shown to accurately correct MODIS satellite data for atmospheric effects over most aquatic regimes, using near infrared (NIR) bands where water turbidity is low, and shortwave infrared (SWIR) bands where the NIR bands indicate high turbidity. However, at very high sediment loads, of circa 500 g/m3 and above - and this is not an unusually high level in delta regions - the SWIR bands can themselves be influenced by the suspended sediment and their utility for atmospheric correction thus compromised. Indeed, the ocean color NIR bands saturate under these conditions and so become unviable for any manner of atmospheric correction. We have employed the MODIS water vapor bands in the 900 nm region of the spectrum to provide a correction to the 1.24 μm band MODIS reflectance, thereby extending the utility of the SeaDAS SWIR atmospheric correction to very high sediment concentration waters.
机译:世界河流三角洲地区附近的沿海水域以大量悬浮沉积物为特征。要根据卫星观测结果估算水沙负荷,重要的一步是准确消除中间大气层的光学效应。已显示出NASA SeaDAS代码可使用水混浊度较低的近红外(NIR)波段和NIR频段指示高浊度的短波红外(SWIR)波段来准确校正MODIS卫星数据在大多数水域中对大气的影响。但是,在很高的沉积物负荷下,大约500 g / m 3 以及更高-而且在三角洲地区这不是一个异常高的水平-SWIR波段本身可能会受到悬浮沉积物及其影响。大气校正的实用性因此受到损害。确实,海洋NIR波段在这些条件下会饱和,因此无法以任何方式进行大气校正。我们在光谱的900 nm范围内采用了MODIS水汽波段,以对1.24μm波段的MODIS反射率进行校正,从而将SeaDAS SWIR大气校正的应用范围扩展到非常高的泥沙浓度水域。

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