Title :
Results of combining L- and C-band passive microwave airborne data over the Sahelian area
Author :
Magagi, Ramata D. ; Kerr, Yann H. ; Meunier, Jean-Charles
Author_Institution :
Inst. Nat. de la Recherche Sci., Sainte-Foy, Que., Canada
fDate :
7/1/2000 12:00:00 AM
Abstract :
This study focuses on an area in the Sahelian zone, Niger, Western Africa, where the HAPEX-Sahel experiment took place in 1992. During the hydrologic atmospheric pilot experiment in the Sahel (HAPEX-Sahel), passive microwave data were acquired with airborne radiometer, the multifrequency (5 to 90 GHz) and dual polarization sensor, PORTOS, and the four-beam sensor push broom microwave radiometer (PBMR), operating at 1.4 GHz in H-polarization. The aim of this investigation is to monitor soil moisture and vegetation parameters by combining L-band C-band passive microwave airborne measurements. Through the relationships between soil moisture measurements from the 2 cm and 0.5 cm top layers, soil moisture is estimated for PORTOS data using the estimated soil moisture along the transects covered by the PBMR flights. The simplified radiative transfer model is then used to extract the optical thickness and the single scattering albedo of vegetation at C-band, and to evaluate the vegetation effect on the estimated soil moisture at L-band. An attempt to relate the estimated optical thickness from PORTOS data to the measured vegetation biophysical parameters [water content, biomass, leaf area index (LAI)] is presented
Keywords :
geophysical techniques; hydrological techniques; hydrology; moisture measurement; radiometry; remote sensing; soil; terrain mapping; vegetation mapping; 1.4 GHz; 5 to 90 GHz; AD 1992; Africa; C-band; HAPEX; L-band; Niger; PORTOS; SHF; Sahel; Sahelian area; UHF; Western Africa; dual polarization; four-beam sensor push broom microwave radiometer; geophysical measurement technique; hydrology; land surface; microwave radiometry; passive microwave airborne data; remote sensing; semi arid land; soil moisture; vegetation mapping; water content; Biomedical optical imaging; L-band; Microwave radiometry; Microwave sensors; Moisture measurement; Optical scattering; Optical sensors; Soil measurements; Soil moisture; Vegetation;
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on