DocumentCode
484330
Title
Predicting L-band Microwave Attenuation through Forest Canopy using Directional Structuring Elements and Airborne Lidar
Author
Wright, W.C. ; Liu, P.W. ; Slatton, K.C. ; Shrestha, R.L. ; Carter, W.E. ; Lee, H.
Author_Institution
Dept. of Civil & Coastal Eng., Univ. of Florida, Gainesville, FL
Volume
3
fYear
2008
fDate
7-11 July 2008
Abstract
The L-band signals broadcast by GPS satellites are attenuated by vegetation, making it problematic, if not impossible, to predict the performance of the system in forested areas without some quantitative measure of the structure and density of the local forest canopy. Airborne laser swath mapping (ALSM) observations can be used to rapidly and remotely sample the structure and density of forested areas. We report here the results of a study performed to determine the attenuation of GPS signals in forests, by correlating changes in the signal-to-noise ratio (SNR) of the received GPS signals under different canopies, using three dimensional structure and density information about each canopy derived from ALSM observations. The results of this study verify that the loss of signal is strongly correlated with the local structure and density of the forest, and we demonstrate how the ALSM point cloud can be used to better predict the attenuation of the GPS signals. The results of this research also pertain to other modes of microwave transmission in forested areas, including satellite and cellular telephony, and the estimation of biomass from L-band radar.
Keywords
Global Positioning System; UHF radio propagation; optical radar; remote sensing by laser beam; tropospheric electromagnetic wave propagation; vegetation; GPS satellite signals; L-band microwave attenuation prediction; airborne laser swath mapping observations; airborne lidar; biomass estimation; density information; directional structuring elements; forest canopy; forested areas; microwave transmission; structure information; vegetation; Area measurement; Attenuation measurement; Density measurement; Global Positioning System; L-band; Laser radar; Optical attenuators; Satellite broadcasting; Signal to noise ratio; Vegetation mapping; GPS; Lidar; biomass; forestry; radar;
fLanguage
English
Publisher
ieee
Conference_Titel
Geoscience and Remote Sensing Symposium, 2008. IGARSS 2008. IEEE International
Conference_Location
Boston, MA
Print_ISBN
978-1-4244-2807-6
Electronic_ISBN
978-1-4244-2808-3
Type
conf
DOI
10.1109/IGARSS.2008.4779441
Filename
4779441
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