A methodology has been developed and applied to accurately quantify and analyze adjacency effects in satellite ocean color data for a set of realistic and representative observation conditions in the northern Adriatic Sea. The study, properly accounting for sea surface reflectance anisotropy, off-nadir views, coastal morphology and atmospheric multiple scattering, include a sensitivity analysis on commonly applied approximations. Results indicate that, within the accuracy limits defined by the radiometric resolution of the ocean color sensors, adjacency effects in coastal waters might be significant at both visible and NIR wavelengths up to several km off the coast. These results additionally highlight a significant dependence on the angle ...
Atmospheric correction (AC) is the basis for quantitative water remote sensing, and adjacency effect...
International audienceThe estimation of the bathymetry and the detection of targets located on the s...
Determination of the water-leaving radiance Lw through above-water radiometry requires knowledge of ...
A methodology to quantify the adjacency effects in remotely sensed data from coastal waters is prese...
Biases induced by land perturbations in satellite-derived water-leaving radiance are theoretically e...
The detectability of adjacency effects (AE) in ocean color remote sensing by SeaWiFS, MODIS-A, MERIS...
Un-supervised hyperspectral remote-sensing reflectance data (<15 km from the shore) were collecte...
Satellite remote sensing data have been used for water quality mapping, but accurate water reflectan...
A remote-sensing reflectance model based on a lookup table is proposed for use in analyzing satellit...
Satellite remote sensing and its application to coastal waters are briefly documented, giving emphas...
The presented adjacency correction algorithm is based on the use of the point spread function (PSF),...
An intensive data collection campaign has been conducted in the coastal waters of the southern North...
Sky reflectance Rsky(λ) is used to correct in situ reflectance measurements in the remote detection ...
Several new satellites such as Sentinel-2, Sentinel-3 and the hyperspectral satellites EnMAP and PRI...
The minimization of adjacency effects (AE) in SeaWiFS primary products at the Aqua Alta Oceanographi...
Atmospheric correction (AC) is the basis for quantitative water remote sensing, and adjacency effect...
International audienceThe estimation of the bathymetry and the detection of targets located on the s...
Determination of the water-leaving radiance Lw through above-water radiometry requires knowledge of ...
A methodology to quantify the adjacency effects in remotely sensed data from coastal waters is prese...
Biases induced by land perturbations in satellite-derived water-leaving radiance are theoretically e...
The detectability of adjacency effects (AE) in ocean color remote sensing by SeaWiFS, MODIS-A, MERIS...
Un-supervised hyperspectral remote-sensing reflectance data (<15 km from the shore) were collecte...
Satellite remote sensing data have been used for water quality mapping, but accurate water reflectan...
A remote-sensing reflectance model based on a lookup table is proposed for use in analyzing satellit...
Satellite remote sensing and its application to coastal waters are briefly documented, giving emphas...
The presented adjacency correction algorithm is based on the use of the point spread function (PSF),...
An intensive data collection campaign has been conducted in the coastal waters of the southern North...
Sky reflectance Rsky(λ) is used to correct in situ reflectance measurements in the remote detection ...
Several new satellites such as Sentinel-2, Sentinel-3 and the hyperspectral satellites EnMAP and PRI...
The minimization of adjacency effects (AE) in SeaWiFS primary products at the Aqua Alta Oceanographi...
Atmospheric correction (AC) is the basis for quantitative water remote sensing, and adjacency effect...
International audienceThe estimation of the bathymetry and the detection of targets located on the s...
Determination of the water-leaving radiance Lw through above-water radiometry requires knowledge of ...