HR: 15:25h
AN: G43D-08 [Abstracts]
TI: Feature Classification Benefits of Full-Waveform Airborne Laser Terrain Mapping
AU: * Athey, A
EM: athey@arlut.utexas.edu
AF: Applied Research Laboratories
University of Texas at Austin, 10000 Burnet Rd, Austin, TX 78758, United States
AU: Amy, N
EM: amy@csr.utexas.edu
AF: Center for Space Research
University of Texas at Austin, 3925 W. Braker Ln, Suite 200, Austin, TX 78759, United States
AU: Araki, L
EM: lucaraki@mail.utexas.edu
AF: Applied Research Laboratories
University of Texas at Austin, 10000 Burnet Rd, Austin, TX 78758, United States
AU: Martin, B
EM: barlett@arlut.utexas.edu
AF: Applied Research Laboratories
University of Texas at Austin, 10000 Burnet Rd, Austin, TX 78758, United States
AU: Brown, W E
EM: gbrown@arlut.utexas.edu
AF: Applied Research Laboratories
University of Texas at Austin, 10000 Burnet Rd, Austin, TX 78758, United States
AU: Gutierrez, R
EM: oskar@mail.utexas.edu
AF: Center for Space Research
University of Texas at Austin, 3925 W. Braker Ln, Suite 200, Austin, TX 78759, United States
AB:
We present the feature classification benefits of full-waveform return analysis from airborne laser terrain mapping
(ALTM). Through the examination of the characteristics of clusters of return pulses in terms of range, number of
returns, scattered amplitude, and scattered width, we are able to discriminate among a number of classes of
ground features. The University of Texas Center for Space Research has obtained several distinct full-waveform
datasets over several ecosystem types including urban and low-height vegetation environments. The UT ALTM
system is equipped with a waveform digitizer that allows the simultaneous recording of conventional first and last
return lidar data and the corresponding reflection waveforms at the 25 kHz laser pulse repetition rate. Reflecting
targets or surfaces within the return laser path are identified using a Gaussian decomposition of the return
waveform. We present the waveform properties from different classes of scatters including man-made and
natural targets and draw some conclusions about the potential for unsupervised, untrained classification of
objects. Finally, we discuss the applications where full-waveform is likely to most benefit ALTM including the
ability to identify ground returns in the presence of understory.
DE: 9805 Instruments useful in three or more fields
SC: Geodesy [G]
MN: 2007 Fall Meeting