International audienceVector radiative transfer (VRT) has been largely used to simulate polarized reflectance of atmosphere and ocean. However it is still not properly used to describe vegetation cover polarized reflectance. In this study, we try to propose a 3-D VRT model based on a modified Monte Carlo (MC) forward ray tracing simulation to analyze vegetation canopy reflectance. Two kinds of leaf scattering are taken into account: (i) Lambertian diffuse reflectance and transmittance and (ii) specular reflection. A new method to estimate the condition on leaf orientation to produce reflection is proposed, and its probability to occur, Pl,max, is computed. It is then shown that Pl,max is low, but when reflection happens, the corresponding r...
The DART (discrete anisotropic radiative transfer) model simulates radiative transfer in heterogeneo...
The DART (discrete anisotropic radiative transfer) model simulates radiative transfer in heterogeneo...
Radiative transfer modeling of the bidirectional reflectance distribution function (BRDF) of leaf ca...
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 ...
Abstract- This paper presents a large set of spectral and directional signatures of the polarized re...
Interpreting remotely-sensed data requires realistic, but simple, models of radiative transfer that ...
The specular reflection process is shown to be a key aspect of radiation transfer by plant canopies....
Two Fagus sylvatica L. stands with different Leaf Area Index and similar planophile Leaf Angle Distr...
A radiative transfer model for a homogeneous plane parallel vegetative canopy is developed. A method...
The DART (discrete anisotropic radiative transfer) model simulates radiative transfer in heterogeneo...
The DART (discrete anisotropic radiative transfer) model simulates radiative transfer in heterogeneo...
A computationally efficient reflectance model for row planted canopies is developed in this paper th...
A computationally efficient reflectance model for row planted canopies is developed in this paper th...
Two Fagus sylvatica L. stands with different Leaf Area Index and similar planophile Leaf Angle Distr...
The DART (discrete anisotropic radiative transfer) model simulates radiative transfer in heterogeneo...
The DART (discrete anisotropic radiative transfer) model simulates radiative transfer in heterogeneo...
Radiative transfer modeling of the bidirectional reflectance distribution function (BRDF) of leaf ca...
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 ...
Abstract- This paper presents a large set of spectral and directional signatures of the polarized re...
Interpreting remotely-sensed data requires realistic, but simple, models of radiative transfer that ...
The specular reflection process is shown to be a key aspect of radiation transfer by plant canopies....
Two Fagus sylvatica L. stands with different Leaf Area Index and similar planophile Leaf Angle Distr...
A radiative transfer model for a homogeneous plane parallel vegetative canopy is developed. A method...
The DART (discrete anisotropic radiative transfer) model simulates radiative transfer in heterogeneo...
The DART (discrete anisotropic radiative transfer) model simulates radiative transfer in heterogeneo...
A computationally efficient reflectance model for row planted canopies is developed in this paper th...
A computationally efficient reflectance model for row planted canopies is developed in this paper th...
Two Fagus sylvatica L. stands with different Leaf Area Index and similar planophile Leaf Angle Distr...
The DART (discrete anisotropic radiative transfer) model simulates radiative transfer in heterogeneo...
The DART (discrete anisotropic radiative transfer) model simulates radiative transfer in heterogeneo...
Radiative transfer modeling of the bidirectional reflectance distribution function (BRDF) of leaf ca...