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首页> 外文期刊>Applied optics >Validation of a vector version of the 6S radiative transfer code for atmospheric correction of satellite data. Part II. Homogeneous Lambertian and anisotropic surfaces
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Validation of a vector version of the 6S radiative transfer code for atmospheric correction of satellite data. Part II. Homogeneous Lambertian and anisotropic surfaces

机译:验证用于卫星数据大气校正的6S辐射传输代码的矢量版本。第二部分均质的朗伯和各向异性表面

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摘要

This is the second part of the validation effort of the recently developed vector version of the 6S (Second Simulation of a Satellite Signal in the Solar Spectrum) radiative transfer code (6SV1), primarily used for the calculation of look-up tables in the Moderate Resolution Imaging Spectroradiometer (MODIS) atmospheric correction algorithm. The 6SV1 code was tested against a Monte Carlo code and Coulson's tabulated values for molecular and aerosol atmospheres bounded by different Lambertian and anisotropic surfaces. The code was also tested in scalar mode against the scalar code SHARM to resolve the previous 6S accuracy issues in the case of an anisotropic surface. All test cases were characterized by good agreement between the 6SV1 and the other codes: The overall relative error did not exceed 0.8%. The study also showed that ignoring the effects of radiation polarization in the atmosphere led to large errors in the simulated top-of-atmosphere reflectances: The maximum observed error was approximately 7.2% for both Lambertian and anisotropic surfaces. (C) 2007 Optical Society of America.
机译:这是最近开发的矢量版本6S(太阳光谱中的卫星信号的第二次仿真)辐射传输代码(6SV1)验证工作的第二部分,该代码主要用于计算中度查找表分辨率成像光谱辐射仪(MODIS)大气校正算法。针对由不同朗伯表面和各向异性表面界定的分子和气溶胶大气,针对蒙特卡洛代码和库尔森的制表值对6SV1代码进行了测试。该代码还针对标量代码SHARM以标量模式进行了测试,以解决各向异性表面情况下以前的6S精度问题。所有测试用例均以6SV1与其他代码之间的良好一致性为特征:总体相对误差不超过0.8%。该研究还表明,忽略大气中辐射极化的影响会导致模拟的大气顶反射率出现较大误差:朗伯和各向异性表面的最大观测误差约为7.2%。 (C)2007年美国眼镜学会。

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