Satellite-derived remote-sensing reflectance (Rrs) can be used for mapping biogeochemically relevant variables, such as the chlorophyll concentration and the Inherent Optical Properties (IOPs) of the water, at global scale for use in climate-change studies. Prior to generating such products, suitable algorithms have to be selected that are appropriate for the purpose. Algorithm selection needs to account for both qualitative and quantitative requirements. In this paper we develop an objective methodology designed to rank the quantitative performance of a suite of bio-optical models. The objective classification is applied using the NASA bio-Optical Marine Algorithm Dataset (NOMAD). Using in situRrs as input to the models, the performance of...
International audienceThe PHYSAT method, which enables identification of four different phytoplankto...
International audienceThe PHYSAT method, which enables identification of four different phytoplankto...
International audienceThe PHYSAT method, which enables identification of four different phytoplankto...
Satellite-derived remote-sensing reflectance (Rrs) can be used for mapping biogeochemically relevant...
Satellite-derived remote-sensing reflectance (Rrs) can be used for mapping biogeochemically relevant...
Satellite-derived remote-sensing reflectance (Rrs) can be used for mapping biogeochemically relevant...
Satellite-derived remote-sensing reflectance (Rrs) just above the sea surface can be used for mappin...
Satellite-derived remote-sensing reflectance (Rrs) can be used for mapping biogeochemically relevant...
A new empirical algorithm is proposed to estimate surface chlorophyll-a concentrations (Chl) in the ...
A large data set containing coincident in situ chlorophyll and remote sensing reflectance measuremen...
The on-going calibration and validation of visible satellite imagery remains a core activity of the...
A large data set containing coincident in situ chlorophyll and remote sensing reflectance measuremen...
A large data set containing coincident in situ chlorophyll and remote sensing reflectance measuremen...
International audienceThe PHYSAT method, which enables identification of four different phytoplankto...
International audienceThe PHYSAT method, which enables identification of four different phytoplankto...
International audienceThe PHYSAT method, which enables identification of four different phytoplankto...
International audienceThe PHYSAT method, which enables identification of four different phytoplankto...
International audienceThe PHYSAT method, which enables identification of four different phytoplankto...
Satellite-derived remote-sensing reflectance (Rrs) can be used for mapping biogeochemically relevant...
Satellite-derived remote-sensing reflectance (Rrs) can be used for mapping biogeochemically relevant...
Satellite-derived remote-sensing reflectance (Rrs) can be used for mapping biogeochemically relevant...
Satellite-derived remote-sensing reflectance (Rrs) just above the sea surface can be used for mappin...
Satellite-derived remote-sensing reflectance (Rrs) can be used for mapping biogeochemically relevant...
A new empirical algorithm is proposed to estimate surface chlorophyll-a concentrations (Chl) in the ...
A large data set containing coincident in situ chlorophyll and remote sensing reflectance measuremen...
The on-going calibration and validation of visible satellite imagery remains a core activity of the...
A large data set containing coincident in situ chlorophyll and remote sensing reflectance measuremen...
A large data set containing coincident in situ chlorophyll and remote sensing reflectance measuremen...
International audienceThe PHYSAT method, which enables identification of four different phytoplankto...
International audienceThe PHYSAT method, which enables identification of four different phytoplankto...
International audienceThe PHYSAT method, which enables identification of four different phytoplankto...
International audienceThe PHYSAT method, which enables identification of four different phytoplankto...
International audienceThe PHYSAT method, which enables identification of four different phytoplankto...