International audienceAtmospheric correction over inland and coastal waters is one of the major remaining challenges in aquatic remote sensing, often hindering the quantitative retrieval of biogeochemical variables and analysis of their spatial and temporal variability within aquatic environments. The Atmospheric Correction Intercomparison Exercise (ACIX-Aqua), a joint NASA – ESA activity, was initiated to enable a thorough evaluation of eight state-of-the-art atmospheric correction (AC) processors available for Landsat-8 and Sentinel-2 data processing. Over 1000 radiometric matchups from both freshwaters (rivers, lakes, reservoirs) and coastal waters were utilized to examine the quality of derived aquatic reflectances (̂ρ w ). This dataset...
Image correction for atmospheric effects (iCOR) is an atmospheric correction tool that can process s...
Satellite remote sensing permits large-scale monitoring of coastal waters through synoptic measureme...
Satellite data provide the only viable means for extensive monitoring of remote and large freshwater...
International audienceAtmospheric correction over inland and coastal waters is one of the major rema...
The correction of the atmospheric effects on optical satellite images is essential for quantitative ...
Atmospheric correction of remote sensing imagery over optically complex waters is still a challengin...
Ocean colour (OC) remote sensing is important for monitoring marine ecosystems. However, inverting t...
International audienceThe Sentinel-3A satellite was launched on 16 February 2016 with the Ocean and ...
The correction of the atmospheric effects on optical satellite images is essential for quantitative ...
The relatively high spatial resolution, short revisit time and red-edge spectral band (705 nm) of th...
The Atmospheric Correction Inter-comparison eXercise (ACIX) is an international initiative with the ...
International audienceRemote monitoring of chlorophyll-a (chla) has been widely used to evaluate the...
Image correction for atmospheric effects (iCOR) is an atmospheric correction tool that can process s...
Satellite remote sensing permits large-scale monitoring of coastal waters through synoptic measureme...
Satellite data provide the only viable means for extensive monitoring of remote and large freshwater...
International audienceAtmospheric correction over inland and coastal waters is one of the major rema...
The correction of the atmospheric effects on optical satellite images is essential for quantitative ...
Atmospheric correction of remote sensing imagery over optically complex waters is still a challengin...
Ocean colour (OC) remote sensing is important for monitoring marine ecosystems. However, inverting t...
International audienceThe Sentinel-3A satellite was launched on 16 February 2016 with the Ocean and ...
The correction of the atmospheric effects on optical satellite images is essential for quantitative ...
The relatively high spatial resolution, short revisit time and red-edge spectral band (705 nm) of th...
The Atmospheric Correction Inter-comparison eXercise (ACIX) is an international initiative with the ...
International audienceRemote monitoring of chlorophyll-a (chla) has been widely used to evaluate the...
Image correction for atmospheric effects (iCOR) is an atmospheric correction tool that can process s...
Satellite remote sensing permits large-scale monitoring of coastal waters through synoptic measureme...
Satellite data provide the only viable means for extensive monitoring of remote and large freshwater...