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Correction of satellite imagery over mountainous terrain

机译:校正山区地形的卫星图像

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摘要

A method for the radiometric correction of satellite imagery over mountainous terrain has been developed to remove atmospheric and topographic effects. The algorithm accounts for horizontally varying atmospheric conditions and also includes the height dependence of the atmospheric radiance and transmittance functions to simulate the simplified properties of a three-dimensional atmosphere. A database has been compiled that contains the results of radiative transfer calculations (atmospheric transmittance, path radiance, direct and diffuse solar flux) for a wide range of weather conditions. A digital elevation model is used to obtain information about surface elevation, slope, and orientation. Based on the Lambertian assumption the surface reflectance in rugged terrain is calculated for the specified atmospheric conditions. Regions with extreme illumination geometries sensitive to BRDF effects can be optionally processed separately. The method is restricted to high spatial resolution satellite sensors with a small swath angle such as the Landsat thematic mapper and Systeme pour l'Observation de la Terre high resolution visible, since some simplifying assumptions were made to reduce the required image processing time. (C) 1998 Optical Society of America. [References: 32]
机译:已经开发了一种用于对山区地形上的卫星图像进行辐射校正的方法,以消除大气和地形的影响。该算法考虑了水平变化的大气条件,并且还包括大气辐射率和透射率函数的高度依赖性,以模拟三维大气的简化特性。已经汇编了一个数据库,其中包含针对各种天气条件的辐射传递计算结果(大气透射率,路径辐射率,直接和漫射太阳通量)。数字高程模型用于获取有关表面高程,坡度和方向的信息。基于朗伯假设,可以针对指定的大气条件计算出崎terrain地形中的表面反射率。对BRDF效应敏感的具有极端照明几何形状的区域可以选择单独处理。该方法仅限于具有小覆盖角的高空间分辨率卫星传感器,例如Landsat专题测绘仪和可见的Systeme pour l'Observation de la Terre高分辨率,因为已做出一些简化的假设以减少所需的图像处理时间。 (C)1998年美国眼镜学会。 [参考:32]

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