Two data-reduction approaches for the Infrared Atmospheric Sounder Interferometer satellite instrument are discussed and compared. The approaches are intended for the purpose of devising and implementing fast near real time retrievals of atmospheric thermodynamical parameters. One approach is based on the usual selection of sparse channels or portions of the spectrum. This approach may preserve the spectral resolution, but at the expense of the spectral coverage. The second approach considers a suitable truncation of the interferogram (the Fourier transform of the spectrum) at points below the nominal maximum optical path difference. This second approach is consistent with the Shannon-Whittaker sampling theorem, preserves the full spectral ...
The Infrared Atmospheric Sounding Interferometer (lAST) has 8461 potential channels to be exploited ...
Retrieval products for temperature, water vapour and ozone have been obtained from spectral radiance...
International audienceHyperspectral infrared sensors onboard polar-orbiting satellites provides 70% ...
Two data-reduction approaches for the Infrared Atmospheric Sounder Interferometer satellite instrume...
Abstract: Two data-reduction approaches for the Infrared Atmospheric Sounder Interferometer satellit...
Abstract: Two data-reduction approaches for the Infrared Atmospheric Sounder Interferometer satellit...
Remote sensing of atmosphere is changing rapidly thanks to the development of high spectral resoluti...
This paper describes a physical-based methodology for the retrieval of geophysical parameters (tempe...
The Infrared Atmospheric Sounding Interferometer (IASI) provides atmospheric observations with high ...
The problem of simultaneous physical retrieval of surface emissivity, skin temperature, and temperat...
The problem of reducing the dimensionality of infrared atmospheric sounding interferometer (IASI) da...
High-resolution infrared sounders, such as the Infrared Atmospheric Sounding Interferometer (IASI) o...
Trace gases comprise less than 1% of Earth’s atmosphere, yet they dominate the radiation budget and...
A physics-based regression algorithm was developed and applied to the Infrared Atmospheric Sounding ...
The Infrared Atmospheric Sounding Interferometer (lAST) has 8461 potential channels to be exploited ...
Retrieval products for temperature, water vapour and ozone have been obtained from spectral radiance...
International audienceHyperspectral infrared sensors onboard polar-orbiting satellites provides 70% ...
Two data-reduction approaches for the Infrared Atmospheric Sounder Interferometer satellite instrume...
Abstract: Two data-reduction approaches for the Infrared Atmospheric Sounder Interferometer satellit...
Abstract: Two data-reduction approaches for the Infrared Atmospheric Sounder Interferometer satellit...
Remote sensing of atmosphere is changing rapidly thanks to the development of high spectral resoluti...
This paper describes a physical-based methodology for the retrieval of geophysical parameters (tempe...
The Infrared Atmospheric Sounding Interferometer (IASI) provides atmospheric observations with high ...
The problem of simultaneous physical retrieval of surface emissivity, skin temperature, and temperat...
The problem of reducing the dimensionality of infrared atmospheric sounding interferometer (IASI) da...
High-resolution infrared sounders, such as the Infrared Atmospheric Sounding Interferometer (IASI) o...
Trace gases comprise less than 1% of Earth’s atmosphere, yet they dominate the radiation budget and...
A physics-based regression algorithm was developed and applied to the Infrared Atmospheric Sounding ...
The Infrared Atmospheric Sounding Interferometer (lAST) has 8461 potential channels to be exploited ...
Retrieval products for temperature, water vapour and ozone have been obtained from spectral radiance...
International audienceHyperspectral infrared sensors onboard polar-orbiting satellites provides 70% ...