To acquire marine parameters from remote sensing ocean color data, the sensor-measured signal needs to be corrected for the atmospheric contribution. Indeed, the solar radiation reflected by air molecules and atmospheric aerosols is significant in the sensor bands of interest for ocean color applications. The removal of the atmospheric contribution is called the atmospheric correction (AC). In open ocean waters, the AC relies on the assumption that the water is totally absorbent in the near infrared (NIR) part of the spectral region, allowing to retrieve the atmospheric contribution and to extrapolate it to the visible spectral range, and thus to determine the marine signal that contains the information on the optical properties of seawater...
It is essential to improve understanding of coastal ocean since the majority of the world's primary ...
Atmospheric correction (AC) is often the first step in ocean-color remote sensing algorithms for sat...
Abstract—The present operational atmospheric correction al-gorithm for multichannel remote sensing o...
To acquire marine parameters from remote sensing ocean color data, the sensor-measured signal needs ...
L'acquisition de paramètres marins à partir des données spatiales de la couleur de l'eau nécessite l...
International audienceThe use of satellites to monitor the color of the ocean requires effective rem...
The ocean color remote sensing involves the removal of the atmospheric contribution, the so-called a...
National Aeronautics and Space Administration's (NASA's) current atmospheric correction (AC) algorit...
With its relatively high spatial resolution coupled with a revisit time of 5 days Sentinel-2 offers ...
The coastal area accumulates major socio-economic and environmental issues. To understand the dynami...
International audienceThe use of satellites to monitor the color of the ocean requires effective rem...
An adaptive selection of the near/shortwave infrared (NIR/SWIR) reflectance correction and the quasi...
The NASA Moderate Resolution Imaging Spectroradiometer onboard the Aqua platform (MODIS-Aqua) provid...
The accurate retrieval of marine reflectance from remotely sensed data depends on the effective remo...
It is essential to improve understanding of coastal ocean since the majority of the world's primary ...
Atmospheric correction (AC) is often the first step in ocean-color remote sensing algorithms for sat...
Abstract—The present operational atmospheric correction al-gorithm for multichannel remote sensing o...
To acquire marine parameters from remote sensing ocean color data, the sensor-measured signal needs ...
L'acquisition de paramètres marins à partir des données spatiales de la couleur de l'eau nécessite l...
International audienceThe use of satellites to monitor the color of the ocean requires effective rem...
The ocean color remote sensing involves the removal of the atmospheric contribution, the so-called a...
National Aeronautics and Space Administration's (NASA's) current atmospheric correction (AC) algorit...
With its relatively high spatial resolution coupled with a revisit time of 5 days Sentinel-2 offers ...
The coastal area accumulates major socio-economic and environmental issues. To understand the dynami...
International audienceThe use of satellites to monitor the color of the ocean requires effective rem...
An adaptive selection of the near/shortwave infrared (NIR/SWIR) reflectance correction and the quasi...
The NASA Moderate Resolution Imaging Spectroradiometer onboard the Aqua platform (MODIS-Aqua) provid...
The accurate retrieval of marine reflectance from remotely sensed data depends on the effective remo...
It is essential to improve understanding of coastal ocean since the majority of the world's primary ...
Atmospheric correction (AC) is often the first step in ocean-color remote sensing algorithms for sat...
Abstract—The present operational atmospheric correction al-gorithm for multichannel remote sensing o...