DocumentCode
143037
Title
Comparison of synthetic images generated from LiDAR intensity and passive hyperspectral imagery
Author
Hartzell, Preston J. ; Fernandez-Diaz, Juan Carlos ; Xiao Wang ; Glennie, Craig L. ; Carter, William E. ; Shrestha, Ramesh L. ; Singhania, Abhinav ; Sartori, Michael P.
Author_Institution
Nat. Center for Airborne Laser Mapping, Univ. of Houston, Houston, TX, USA
fYear
2014
fDate
13-18 July 2014
Firstpage
1345
Lastpage
1348
Abstract
Pulsed Light Detection And Ranging (LiDAR) intensity has commonly been used as a measure of relative reflectance of materials to aid in both point classification and object identification. However, as LiDAR systems use a single light wavelength, the intensity has had little value for advanced material classification. With the advent of multispectral LiDAR systems, it may be possible to use the LiDAR intensity in multiple spectral bands to assist in automated target recognition. Towards this end, we present a comparison between LiDAR intensity images and passive reflectance from a hyperspectral imaging system in the same spectral bands. Although qualitatively the LiDAR intensity and hyperspectral imagery show good agreement, a quantitative analysis shows there are significant deviations between their respective reflectance measurements, particularly for complex features such as trees.
Keywords
geophysical image processing; geophysical techniques; hyperspectral imaging; image classification; image recognition; remote sensing by laser beam; LiDAR intensity imagery; advanced material classification; automated target recognition; hyperspectral imaging system; multispectral LiDAR systems; object identification; passive hyperspectral imagery; point classification; single light wavelength; synthetic images; Calibration; Hyperspectral imaging; Image sensors; Laser radar; Reflectivity; Sensors; Hyperspectral; LiDAR Intensity; Reflectance;
fLanguage
English
Publisher
ieee
Conference_Titel
Geoscience and Remote Sensing Symposium (IGARSS), 2014 IEEE International
Conference_Location
Quebec City, QC
Type
conf
DOI
10.1109/IGARSS.2014.6946683
Filename
6946683
Link To Document