Title :
Characterization of the Salar de Uyuni for in-orbit satellite calibration
Author :
Lamparelli, Rubens Augusto Camargo ; Ponzoni, Flávio Jorge ; Zullo, Jurandir, Jr. ; Pellegrino, Giampaolo Queiroz ; Arnaud, Yves
Author_Institution :
Agric. Res. Center, Campinas State Univ., Sao Paulo, Brazil
fDate :
6/1/2003 12:00:00 AM
Abstract :
Field work was carried out on June 8 and 9, 1999 to evaluate the use of the Salar de Uyuni as a test site for in-orbit satellite calibration. A dataset of ten Thematic Mapper (TM) images, from 1988-1997, was used to select three test points based on the analysis of the temporal stability of the reflectance of Salar´s surface. Bidirectional reflectance factor (BRF) values of Salar´s surface within the precision suitable for vicarious calibration procedures were obtained using a CE313-2/CIMEL radiometer. In spite of seeming visually homogeneous, the BRF values of one test point have presented significative statistical differences with the two others. Atmospheric characterization was possible with a sunphotometer CE317/CIMEL showing the low importance of the atmospheric effects in the image acquisition. The results confirm that the Salar de Uyuni has the characteristics pointed out by many authors as suitable for a vicarious calibration site, specially from April to November because of the reduced rainfall occurrence. The main disadvantages are the difficult access and the critical period for data collecting in the rainy season from November to March. An angular reflectance variation study is recommended in order to evaluate its Lambertian properties.
Keywords :
calibration; lakes; reflectivity; remote sensing; Bolivian highlands; CE313-2/CIMEL radiometer; CE317/CIMEL sunphotometer; Lambertian properties; Salar de Uyuni; Thematic Mapper images; angular reflectance variation; atmospheric effects; bidirectional reflectance factor; calibration site; image acquisition; in-orbit satellite calibration; reflectance-based method; salt lake surface; temporal stability; test points; Area measurement; Atmospheric measurements; Calibration; Extraterrestrial measurements; Radiometry; Reflectivity; Remuneration; Satellite broadcasting; Sensor systems; Testing;
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
DOI :
10.1109/TGRS.2003.810713