天蓬
辐射传输
叶绿素荧光
投掷
环境科学
遥感
大气辐射传输码
植被(病理学)
大气科学
光合作用
叶面积指数
物理
地质学
植物
光学
计算机科学
生物
医学
病理
程序设计语言
作者
Zbyněk Malenovský,Omar Regaieg,Tiangang Yin,Nicolas Lauret,Jordan Guilleux,Eric Chavanon,Nuria Duran,Růžena Janoutová,Antony Delavois,Jean Meynier,Ghania Medjdoub,Peiqi Yang,Christiaan van der Tol,Douglas C. Morton,Bruce D. Cook,Jean‐Philippe Gastellu‐Etchegorry
标识
DOI:10.1016/j.rse.2021.112564
摘要
Abstract Solar-induced fluorescence (SIF) is a subtle but informative optical signal of vegetation photosynthesis. Remotely sensed SIF integrates environmental, physiological and structural changes that alter photosynthesis at leaf, plant and canopy scales. Radiative transfer models are ideally suited to investigate the complex sources of variability in the SIF signal to guide the interpretation of SIF retrievals from airborne and space-borne platforms. Here, we coupled the Fluspect-Cx model of leaf optical properties and chlorophyll-a fluorescence with the Discrete Anisotropic Radiative Transfer (DART) model to upscale SIF from individual leaves to three-dimensional (3D) structurally explicit canopies. For one-dimensional homogeneous (turbid-like) canopies, DART-SIF was nearly identical to SIF simulated in two existing models, SCOPE and mSCOPE (RMSE
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