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Estimation of global leaf area index and absorbed par using radiative transfer models

IEEE Transactions on Geoscience and Remote Sensing · 1997 · Vol. 35(6) · pp. 1380–1393

Abstract

A simple method for the estimation of global leaf area index (LAI) and fraction of photosynthetically active radiation absorbed by the vegetation (FAPAR) from atmospherically corrected Normalized Difference Vegetation Index (NDVI) observations is described. Recent improvements to the authors' three dimensional radiative transfer model of a vegetated surface are described. Example simulation results and a validation exercise are discussed. The model was utilized to derive land cover specific NDVI-LAI and NDVI-FAPAR relations. The method therefore requires stratification of global vegetation into cover types that are compatible with the radiative transfer model. Such a classification based on vegetation structure is proposed and a simple method for its derivation is presented. Proof-of-concept results are given to illustrate the feasibility of the proposed method.

Remote Sensing in AgricultureLeaf Properties and Growth MeasurementUrban Heat Island MitigationNormalized Difference Vegetation IndexPhotosynthetically active radiationRadiative transferLeaf area indexRemote sensingEnvironmental scienceVegetation (pathology)Vegetation IndexAtmospheric radiative transfer codesLand cover

Funding

  • National Aeronautics and Space Administration
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