Interpreting remotely-sensed data requires realistic, but simple, models of radiative transfer that occurs within a vegetation canopy. In this paper, an improved version of the stochastic radiative transfer model (SRTM) is proposed by assuming that all photons that have not been specularly reflected enter the leaf interior. The contribution of leaf specular reflection is considered by modifying leaf scattering phase function using Fresnel reflectance. The canopy bidirectional reflectance factor (BRF) estimated from this model is evaluated through comparisons with field-measured maize BRF. The result shows that accounting for leaf specular reflection can provide better performance than that when leaf specular reflection is neglected over a w...
Two Fagus sylvatica L. stands with different Leaf Area Index and similar planophile Leaf Angle Distr...
Earth observations collected by remote sensors provide unique information to our ever-growing knowle...
International audienceVector radiative transfer (VRT) has been largely used to simulate polarized re...
Interpreting remotely-sensed data requires realistic, but simple, models of radiative transfer that ...
Interpreting remotely-sensed data requires realistic, but simple, models of radiative transfer that ...
A radiative transfer model for a homogeneous plane parallel vegetative canopy is developed. A method...
Information on the fractions of incident radiation reflected, transmitted and absorbed by a plant ca...
The vegetation radiative transfer model, Cupid, was tested by comparing simulations with measured ca...
The vegetation radiative transfer model, Cupid, was tested by comparing simulations with measured ca...
Radiative transfer modeling of the bidirectional reflectance distribution function (BRDF) of leaf ca...
The vegetation radiative transfer model, Cupid, was tested by comparing simulations with measured ca...
The specular reflection process is shown to be a key aspect of radiation transfer by plant canopies....
The amount of leaf area and canopy absorbed photosynthetically active radiation (APAR) (often expres...
The amount of leaf area and canopy absorbed photosynthetically active radiation (APAR) (often expres...
Two Fagus sylvatica L. stands with different Leaf Area Index and similar planophile Leaf Angle Distr...
Two Fagus sylvatica L. stands with different Leaf Area Index and similar planophile Leaf Angle Distr...
Earth observations collected by remote sensors provide unique information to our ever-growing knowle...
International audienceVector radiative transfer (VRT) has been largely used to simulate polarized re...
Interpreting remotely-sensed data requires realistic, but simple, models of radiative transfer that ...
Interpreting remotely-sensed data requires realistic, but simple, models of radiative transfer that ...
A radiative transfer model for a homogeneous plane parallel vegetative canopy is developed. A method...
Information on the fractions of incident radiation reflected, transmitted and absorbed by a plant ca...
The vegetation radiative transfer model, Cupid, was tested by comparing simulations with measured ca...
The vegetation radiative transfer model, Cupid, was tested by comparing simulations with measured ca...
Radiative transfer modeling of the bidirectional reflectance distribution function (BRDF) of leaf ca...
The vegetation radiative transfer model, Cupid, was tested by comparing simulations with measured ca...
The specular reflection process is shown to be a key aspect of radiation transfer by plant canopies....
The amount of leaf area and canopy absorbed photosynthetically active radiation (APAR) (often expres...
The amount of leaf area and canopy absorbed photosynthetically active radiation (APAR) (often expres...
Two Fagus sylvatica L. stands with different Leaf Area Index and similar planophile Leaf Angle Distr...
Two Fagus sylvatica L. stands with different Leaf Area Index and similar planophile Leaf Angle Distr...
Earth observations collected by remote sensors provide unique information to our ever-growing knowle...
International audienceVector radiative transfer (VRT) has been largely used to simulate polarized re...