AbstractThis work aims at the development and validation of a zeroth order radiative transfer (RT) approach to describe the visible band (555nm) reflectance of conifer-dominated boreal forest for the needs of remote sensing of snow. This is accomplished by applying airborne and mast-borne spectrometer data sets together with high-resolution information on forest canopy characteristics. In case of aerial spectrometer observations, tree characteristics determined from airborne LIDAR observations are applied to quantify the effect of forest canopy on scene reflectance. The results indicate that a simple RT model is feasible to describe extinction and reflectance properties of both homogeneous and heterogeneous forest scenes (corresponding to v...
In open forest canopies, such as in boreal forests, forest floor can contribute significantly to the...
The dataset contains 10 meter resolution reflectance data from boreal snow-covered landscape. The pu...
The ICESat-2 satellite launched by NASA in 2018 collects global elevation data using the photon coun...
This work aims at the development and validation of a zeroth order radiative transfer (RT) approach ...
AbstractThis work aims at the development and validation of a zeroth order radiative transfer (RT) a...
We aim a better understanding of the effect of spring-time snow melt on the remotely sensed scene re...
Monitoring of snow cover in northern hemisphere is highly important for climate research and for ope...
The forest reflectance and transmittance model (FRT) is applicable over a wide swath of boreal fores...
International audienceWe developed a mobile remote sensing measurement facility for spectral and ani...
Boreal forests exhibit strong seasonal dynamics in their reflectance spectra during the short, snow-...
Leafless deciduous canopies in boreal regions affect the energy available for snowmelt and reduce ov...
Forest canopies are complex 3-D structures at the interface between the atmosphere and the land surf...
Spectral invariants provide a novel approach for characterizing canopy structure in forest reflectan...
Traditionally, it is necessary to pre-process remote sensing data to obtain top of canopy (TOC) refl...
The complex dynamics of snow accumulation and melt processes under forest canopies entail major obse...
In open forest canopies, such as in boreal forests, forest floor can contribute significantly to the...
The dataset contains 10 meter resolution reflectance data from boreal snow-covered landscape. The pu...
The ICESat-2 satellite launched by NASA in 2018 collects global elevation data using the photon coun...
This work aims at the development and validation of a zeroth order radiative transfer (RT) approach ...
AbstractThis work aims at the development and validation of a zeroth order radiative transfer (RT) a...
We aim a better understanding of the effect of spring-time snow melt on the remotely sensed scene re...
Monitoring of snow cover in northern hemisphere is highly important for climate research and for ope...
The forest reflectance and transmittance model (FRT) is applicable over a wide swath of boreal fores...
International audienceWe developed a mobile remote sensing measurement facility for spectral and ani...
Boreal forests exhibit strong seasonal dynamics in their reflectance spectra during the short, snow-...
Leafless deciduous canopies in boreal regions affect the energy available for snowmelt and reduce ov...
Forest canopies are complex 3-D structures at the interface between the atmosphere and the land surf...
Spectral invariants provide a novel approach for characterizing canopy structure in forest reflectan...
Traditionally, it is necessary to pre-process remote sensing data to obtain top of canopy (TOC) refl...
The complex dynamics of snow accumulation and melt processes under forest canopies entail major obse...
In open forest canopies, such as in boreal forests, forest floor can contribute significantly to the...
The dataset contains 10 meter resolution reflectance data from boreal snow-covered landscape. The pu...
The ICESat-2 satellite launched by NASA in 2018 collects global elevation data using the photon coun...