光合有效辐射
光谱辐射计
遥感
辐射传输
叶面积指数
短波
中分辨率成像光谱仪
大气辐射传输码
环境科学
短波辐射
天蓬
植被(病理学)
气象学
算法
辐射
大气科学
反射率
计算机科学
卫星
物理
光学
地质学
地理
光合作用
生态学
医学
植物
考古
病理
天文
生物
作者
Y. Knyazikhin,John V. Martonchik,Ranga B. Myneni,David J. Diner,Steven W. Running
摘要
A synergistic algorithm for producing global leaf area index and fraction of absorbed photosynthetically active radiation fields from canopy reflectance data measured by MODIS (moderate resolution imaging spectroradiometer) and MISR (multiangle imaging spectroradiometer) instruments aboard the EOS‐AM 1 platform is described here. The proposed algorithm is based on a three‐dimensional formulation of the radiative transfer process in vegetation canopies. It allows the use of information provided by MODIS (single angle and up to 7 shortwave spectral bands) and MISR (nine angles and four shortwave spectral bands) instruments within one algorithm. By accounting features specific to the problem of radiative transfer in plant canopies, powerful techniques developed in reactor theory and atmospheric physics are adapted to split a complicated three‐dimensional radiative transfer problem into two independent, simpler subproblems, the solutions of which are stored in the form of a look‐up table. The theoretical background required for the design of the synergistic algorithm is discussed.
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