DocumentCode
3349188
Title
The Swiss field-goniometer system (FIGOS)
Author
Sandmeier, Stefan ; Sandmeier, Willy ; Itten, Klaus I. ; Schaepman, Michael E. ; Kellenberger, Tobias W.
Author_Institution
Dept. of Geogr., Zurich Univ., Switzerland
Volume
3
fYear
34881
fDate
10-14 Jul1995
Firstpage
2078
Abstract
The reflectance characteristics of most natural objects vary with illumination and viewing geometry, i.e. expose a non-Lambertian behaviour. New sensor systems are capable of viewing targets quasi-simultaneously from nadir and different off-nadir positions. In regard to radiometric corrections the Lambertian assumption has to be overcome by detailed knowledge of the bidirectional reflectance distribution function (BRDF) of targets at the Earth´s surface. In order to obtain bidirectional reflectance factor (BRF) data of naturally illuminated targets a transportable field-goniometer system (FIGOS) has been developed. It is operated together with a GER-3700 spectroradiometer. The goniometer consists of an azimuth full-circle and a zenith semi-arc of 2 m radius each. It enables one to observe a target from any desired viewing direction. First measurements are taken from a plane meadow under different solar zenith angles over the hemisphere in a resolution of 15° and 30° in zenith and azimuth direction, respectively. A Spectralon panel is measured at the beginning and end of a hemispherical data set. As the position of the Sun and the atmospheric conditions cannot be assumed constant over the measurement period of about 18 minutes, the global solar irradiance is monitored simultaneously to the BRF-data acquisition. The obtained results clearly show the non-Lambertian reflectance characteristics of the meadow
Keywords
geophysical equipment; goniometers; remote sensing; BRDF; FIGOS; Swiss field goniometer; angular dependence; apparatus; bidirectional reflectance distribution function; bidirectional reflectance factor; geophysical equipment; illumination geometry; instrument; land surface; light reflection; meadow; off-nadir; optical imaging; radiometric correction; reflectance characteristics; remote sensing; terrain mapping; vegetation mapping; viewing geometry; Atmospheric measurements; Azimuth; Bidirectional control; Distribution functions; Earth; Geometry; Lighting; Radiometry; Reflectivity; Sensor systems;
fLanguage
English
Publisher
ieee
Conference_Titel
Geoscience and Remote Sensing Symposium, 1995. IGARSS '95. 'Quantitative Remote Sensing for Science and Applications', International
Conference_Location
Firenze
Print_ISBN
0-7803-2567-2
Type
conf
DOI
10.1109/IGARSS.1995.524113
Filename
524113
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