Title :
Shallow water seagrass observed by high resolution full waveform bathymetric LiDAR
Author :
Pan, Zhigang ; Fernandez-Diaz, Juan Carlos ; Glennie, Craig L. ; Starek, Michael
Abstract :
Full waveform bathymetric LiDAR allows a detailed examination of laser backscatter from the water surface, water column and benthic layer. The presence of seagrass on the ben-thic layer would also be expected to influence the backscat-tered radiation encapsulated in the full waveform observations. The combination of conventional geometric features, radiometric features and derived geometric features from the waveform analysis may make it possible to identify the presence of seagrass or even classify the different types of sea-grass. An analysis of the correlation of seagrass location with different full waveform LiDAR parameters is presented. Overall, it is found that a high degree of correlation exists between the presence of seagrass and LiDAR intensity, benthic elevation and benthic return pulse width. Surface roughness, curvature and vertical uncertainty are found to have weak correlation with the presence of seagrass.
Keywords :
bathymetry; optical radar; vegetation; waveform analysis; LiDAR intensity; benthic elevation; benthic layer seagrass; benthic return pulse width; conventional geometric feature combination; derived geometric feature; encapsulated backscattered radiation; full waveform LiDAR parameter; full waveform observation; high correlation degree; high resolution full waveform bathymetric LiDAR; laser backscatter examination; radiometric feature; seagrass location correlation analysis; seagrass type; seagrass weak correlation; shallow water seagrass; surface curvature; surface roughness; vertical uncertainty; water column; water surface; waveform analysis; Correlation; Laser radar; Optical surface waves; Sea surface; Surface emitting lasers; Surface waves; Water; Bathymetry; Full waveform; LiDAR; Seagrass;
Conference_Titel :
Geoscience and Remote Sensing Symposium (IGARSS), 2014 IEEE International
Conference_Location :
Quebec City, QC
DOI :
10.1109/IGARSS.2014.6946682