Title :
The Hyperspectral Unmixing of Trace-Gases From ESA SCIAMACHY Reflectance Data
Author :
Addabbo, Pia ; di Bisceglie, Maurizio ; Galdi, Carmela ; Ullo, Silvia Liberata
Author_Institution :
Dept. of Eng., Univ. of Sannio, Benevento, Italy
Abstract :
Atmospheric concentrations of trace-gases are retrieved from hyperspectral data using a blind source separation method. The algorithm relies on the assumption that the absorption cross sections of the gas components are weakly dependent on the overall atmospheric background. The unmixing of contributions from the logarithm of the spectral reflectance provides estimates of both individual trace-gas absorption cross sections and their concentrations. In the experimental analysis, nadir reflectances received by SCanning Imaging Absorption spectroMeter for Atmospheric CHartographY are considered in two scenarios: the sulfur dioxide emissions from a volcanic eruption and the nitrogen dioxide production from anthropogenic pollution. In both cases, it is demonstrated that the algorithm performs very similarly to the Differential Optical Absorption Spectroscopy algorithm but with very little ancillary information.
Keywords :
air pollution; atmospheric spectra; blind source separation; geophysical signal processing; hyperspectral imaging; nitrogen compounds; reflectivity; sulphur compounds; Differential Optical Absorption Spectroscopy algorithm; ESA SCIAMACHY reflectance data; NO2; SCanning Imaging Absorption spectroMeter for Atmospheric CHartographY; SO2; absorption cross sections; anthropogenic pollution; atmospheric background; atmospheric concentrations; blind source separation method; hyperspectral data; hyperspectral unmixing; nadir reflectances; nitrogen dioxide production; spectral reflectance; sulfur dioxide emissions; trace-gases; volcanic eruption; Absorption; Atmospheric modeling; Calibration; Optical mixing; Optical sensors; Standards; Volcanoes; Blind source separation (BSS); SCanning Imaging Absorption spectroMeter for Atmospheric CHartographY (SCIAMACHY); trace-gas concentration retrieval;
Journal_Title :
Geoscience and Remote Sensing Letters, IEEE
DOI :
10.1109/LGRS.2015.2452315