The bidirectional reflectance parametric and semi-empirical Rahman-Pinty-Verstraete (RPV) model was inverted based on Bidirectional Reflectance Factor (BRF) measurements of 60 Fagus sylvatica L. leaves in the optical domain between 400 nm and 2,500 nm. This was accomplished using data retrieved from the Compact Laboratory Spectro-Goniometer (CLabSpeG) with an azimuth and zenith angular step of 30 and 15 degrees, respectively. Wavelength depended RPV parameters describing the leaf reflectance shape (rho0), the curve convexity (k) and the dominant forward scattering (Θ) were derived using the RPVinversion-2 software (Joint Research Centre) package with Correlation Coefficient values between modelled and measured data varying between 0.71 and ...
A radiative transfer model for a homogeneous plane parallel vegetative canopy is developed. A method...
International audienceRadiative transfer models have long been used to characterize the foliar conte...
The Bidirectional Reflectance Distribution Function (BRDF) of several plant canopies was extensivel...
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...
International audienceA physically based, analytical model of the bidirectional reflectance of porou...
A physically based, analytical model of the bidirectional reflectance of porous media was derived in...
This paper aims to link the spectral and directional variations of the leaf Bidirectional Reflectanc...
While Hyperspectral Imaging (HSI) has been successfully applied for remote monitoring of vegetation,...
The PROSPECT leaf optical properties and SAIL canopy reflectance models were coupled and inverted us...
Canopy radiative transfer models simulate the bidirec- model inversions by decreasing the number of ...
The vegetation radiative transfer model, Cupid, was tested by comparing simulations with measured ca...
Interpreting remotely-sensed data requires realistic, but simple, models of radiative transfer that ...
The model SLOPE (Stochastic model for Leaf Optical Properties Extended for fluorescence) is based on...
Leaf chlorophyll content plays a vital role in plant photosynthesis. The PROSPECT model has been wid...
A radiative transfer model for a homogeneous plane parallel vegetative canopy is developed. A method...
International audienceRadiative transfer models have long been used to characterize the foliar conte...
The Bidirectional Reflectance Distribution Function (BRDF) of several plant canopies was extensivel...
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...
International audienceA physically based, analytical model of the bidirectional reflectance of porou...
A physically based, analytical model of the bidirectional reflectance of porous media was derived in...
This paper aims to link the spectral and directional variations of the leaf Bidirectional Reflectanc...
While Hyperspectral Imaging (HSI) has been successfully applied for remote monitoring of vegetation,...
The PROSPECT leaf optical properties and SAIL canopy reflectance models were coupled and inverted us...
Canopy radiative transfer models simulate the bidirec- model inversions by decreasing the number of ...
The vegetation radiative transfer model, Cupid, was tested by comparing simulations with measured ca...
Interpreting remotely-sensed data requires realistic, but simple, models of radiative transfer that ...
The model SLOPE (Stochastic model for Leaf Optical Properties Extended for fluorescence) is based on...
Leaf chlorophyll content plays a vital role in plant photosynthesis. The PROSPECT model has been wid...
A radiative transfer model for a homogeneous plane parallel vegetative canopy is developed. A method...
International audienceRadiative transfer models have long been used to characterize the foliar conte...
The Bidirectional Reflectance Distribution Function (BRDF) of several plant canopies was extensivel...