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首页> 外文期刊>International journal of remote sensing >The integrated radiometric correction of optical remote sensing imageries
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The integrated radiometric correction of optical remote sensing imageries

机译:光学遥感影像的综合辐射校正

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摘要

Environmental analysis, management and modelling require detailed and precise land-use/land-cover discrimination as initial conditions of land surface characteristics. With the ultimate goal of accurate land surface classification analysis, we devised a fully image-based and physically based correction method (the Integrated Radiometric Correction (IRC) method) considering both the atmospheric and the topographic effects simultaneously, using the information deduced from the satellite images and 5 m resolution DEM data. The overall process is carried out in four steps: (i) calculation of the radiance/irradiance relational expression for horizontal surfaces, (ii) devising the radiance/irradiance relational expression for inclined surfaces, (iii) derivation of solar and land geometric parameters from DEM data, as well as the calculation of the topographic correction factor (A-factor) and the atmospheric transmit-tance functions, and (iv) retrieval of the corrected surface reflectance and radiance. Using Landsat/ETM+ satellite data, the performance of the formulated IRC method is evaluated visually and statistically. Visual evaluation of radiometrically corrected images shows significant improvements for each band as well as for various bands composites, while the independence between the corrected surface reflectance and radiance, and the topography (incidence angle (i) or solar illumination (cos i)) is shown by very weak correlation coefficients as compared with non-corrected data.
机译:环境分析,管理和建模需要详细而精确的土地利用/土地覆盖区分作为土地表面特征的初始条件。为了进行准确的地表分类分析,我们设计了一种完全基于图像和基于物理的校正方法(综合辐射校正(IRC)方法),同时使用了从卫星得出的信息,同时考虑了大气和地形的影响图像和5 m分辨率的DEM数据。整个过程分四个步骤进行:(i)计算水平表面的辐射/辐照关系表达式,(ii)设计倾斜表面的辐射/辐照关系表达式,(iii)从中推导太阳和陆地的几何参数DEM数据,以及地形校正因子(A因子)和大气透射率函数的计算,以及(iv)检索校正后的表面反射率和辐射率。使用Landsat / ETM +卫星数据,可以直观地和统计地评估制定的IRC方法的性能。辐射校正图像的视觉评估显示了每个波段以及各个波段合成物的显着改善,同时显示了校正后的表面反射率和辐射率与地形(入射角(i)或太阳光照(cos i))之间的独立性与未经校正的数据相比,相关系数非常弱。

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