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Physically based methodology for generating LAI and FPAR earth system data records from AVHRR and MODIS

机译:基于物理基于的方法从AVHRR和MODIS生成LAI和FPAR地球系统数据记录

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We have developed and tested a physically based approach, rooted in the theory of stochastic radiative transfer within vegetation, for generating a seamless time series of LAI and FPAR fields from AVHRR NDVI data and MODIS reflectance data. Our goal is to: (i) develop a theoretical formulation that results in consistent LAI and FPAR fields from satellite data of varying spectral and spatial resolutions, and (ii) assess the uncertainties in the generated fields due to differences in quality and information content of AVHRR and MODIS sensors. Our results suggests that single scattering albedo and overall relative uncertainty of input surface reflectances and/ or NDVI are configurable parameters in governing the accuracy of LAI/FPAR retrievals from NDVI as an input. Single scattering albedo accounts for differences in both spatial and spectral resolution and the implementation of the algorithm is performed over test areas such that: (i) the consistency requirements are met, (ii) the retrieval index is maximized, and (iii) the difference between reference LAI and LAI obtained from AVHRR NDVI is minimized.
机译:我们已经开发并测试了一种物理上的方法,植根于植被内随机辐射转移的理论,用于从AVHRR NDVI数据和MODIS反射数据产生无缝时间序列的LAI和FPA场。我们的目标是:(i)制定一种理论制定,导致来自不同光谱和空间分辨率的卫星数据的一致Lai和FPA场,并且(ii)由于质量和信息内容的差异而评估所生成的领域的不确定性AVHRR和MODIS传感器。我们的结果表明,单次散射反照和输入表面反射和/或NDVI的总体相对不确定性是控制来自NDVI作为输入的LAI / FPAR检索的准确性的可配置参数。单次散射Albedo用于空间和光谱分辨率的差异,并且通过测试区域执行算法的实现,使得:(i)满足一致性要求,(ii)检索索引最大化,(iii)差异从AVHRR NDVI获得的参考LAI和LAI之间是最小化的。

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