DocumentCode
921349
Title
Estimation of subpixel vegetation density of natural regions using satellite multispectral imagery
Author
Jasinski, Michael F.
Author_Institution
NASA Goddard Space Flight Center, Greenbelt, MD, USA
Volume
34
Issue
3
fYear
1996
fDate
5/1/1996 12:00:00 AM
Firstpage
804
Lastpage
813
Abstract
A procedure is presented for estimating the subpixel fractional canopy density of natural or undisturbed semivegetated regions on a pixel-by-pixel basis using one satellite multispectral image and a physical modeling approach. The method involves applying a model of the bulk, nondimensional plant geometry combined with a simple model of canopy reflectance and transmittance to the red and near-infrared reflectance space of the atmospherically corrected satellite image. Shadow effects are parameterized assuming Poisson-distributed and geometrically similar plant canopies. The method is applied to the estimation of fractional cover and leaf area index, using Landsat thematic mapper imagery, of two physiologically different plant communities. The first is the Landes Forest, a coniferous region in south central France, during the June 1986 HAPEX-Mobilhy Experiment. The second is the semiarid Walnut Gulch basin of southeast Arizona that contains predominantly shrubs and grasses, during the June 1990 MONSOON Experiment. The procedure offers a physically based alternative to empirical vegetation indices for estimating regionally variable canopy densities of natural, homogeneous systems with little or no ground truth
Keywords
forestry; geophysical signal processing; geophysical techniques; infrared imaging; optical information processing; remote sensing; Arizona; France; IR imaging; Landes Forest; USA; United States; Walnut Gulch basin; fractional canopy; geophysical measurement technique; grass; infrared; land surface; leaf area index; multispectral remote sensing; natural region; nondimensional plant geometry; optical imaging; physical modeling; rural area; satellite multispectral imagery; shrubs; subpixel vegetation density; thematic mapper; vegetation mapping; visible imaging; Area measurement; Density measurement; Multispectral imaging; Neodymium; Reflectivity; Satellites; Shape; Soil measurements; Solid modeling; Vegetation mapping;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/36.499785
Filename
499785
Link To Document