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Prototyping of MISR LAI and FPAR algorithm with POLDER data over Africa

机译:利用POLDER数据在非洲开发MISR LAI和FPAR算法的原型

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The multi-angle imaging spectroradiometer (MISR) instrument is designed to provide global imagery at nine discrete viewing angles and four visibleear-infrared spectral bands. The MISR standard products include vegetation canopy green leaf area index (LAI) and fraction of photosynthetically active radiation absorbed by vegetation (FPAR). These products are produced using a peer-reviewed algorithm documented in the EOS-AM1 (Terra) special issue of the Journal of Geophysical Research. This paper presents results on spatial distributions of LAI and FPAR of vegetated land surfaces derived from the MISR LAI/FPAR algorithm with bidirectional reflectance data from the polarization and directionality of the Earth's reflectance (POLDER) instrument over Africa. The results indicate that the proposed algorithm reflects the physical relationships between surface reflectances and biophysical parameters and demonstrates the advantages of using multiangle data instead of single-angle data. A new method for evaluating bihemispherical reflectance (BHR) from multi-angle measurements of hemispherical directional reflectance factor (HDRF) was developed to prototype the algorithm with POLDER data. The accuracy of BHR evaluation and LAI/FPAR estimation is also presented. To authors demonstrate the advantages of using multi-angle data over single-angle data of surface reflectance.
机译:多角度成像光谱辐射仪(MISR)仪器旨在提供9个离散视角和4个可见/近红外光谱带的全局图像。 MISR标准产品包括植被冠层绿叶面积指数(LAI)和植被吸收的光合有效辐射的比例(FPAR)。这些产品是使用《地球物理研究杂志》 EOS-AM1(Terra)特刊中记录的经过同行评审的算法生产的。本文介绍了从MISR LAI / FPAR算法获得的植被地表的LAI和FPAR的空间分布,并结合了来自非洲地球反射率(POLDER)仪器的偏振和方向性的双向反射率数据。结果表明,该算法反映了表面反射率与生物物理参数之间的物理关系,并证明了使用多角度数据代替单角度数据的优势。提出了一种从多角度测量半球方向反射率(HDRF)评估双半球反射率(BHR)的新方法,以使用POLDER数据对该算法进行原型设计。还介绍了BHR评估和LAI / FPAR估计的准确性。向作者展示了使用多角度数据优于表面反射率的单角度数据的优势。

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