DocumentCode
1301550
Title
Modulations of laser signals by water waves observed by a boxcar integrator
Author
Lin, C.S.
Author_Institution
Naval Res. Lab., Washington, DC, USA
Volume
38
Issue
1
fYear
2000
fDate
1/1/2000 12:00:00 AM
Firstpage
198
Lastpage
204
Abstract
This paper describes a new measurement technique for active remote sensing of water waves using a lidar. To demonstrate this technique, a series of experiments studying interactions of laser pulses with water waves was performed in an NRL wave tank. This technique used a commercially available boxcar integrator to sample IR laser pulses reflected from water waves. These water waves were generated either by artificial winds or a mechanical paddle in the wave tank. The boxcar integrator samples these laser waveforms as a function of windspeeds and paddle frequencies. This paper describes the experimental technique, the measurements, and the data analyses. For wind-generated water waves, results of the data analyses show that lidar-detected laser energies and the lidar-detected water-wave frequencies are functions of windspeeds. For paddle waves, the measurement data show that the laser backscattering cross-section from a water wave is a function of height positions within the water wave. The measurement data successfully demonstrate a boxcar-integrator waveform-sampling technique as an alternative technique to, and possible improvement over, a conventional waveform digitizer. The potential application of this technique in active remote sensing is discussed
Keywords
geophysical signal processing; ocean waves; oceanographic techniques; optical information processing; optical radar; remote sensing by laser beam; IR laser pulse; boxcar integrator; cross-section; laser backscattering; laser remote sensing; laser signal modulation; laser waveform; lidar; measurement technique; ocean wave; paddle wave; water wave; waveform-sampling; wind-generated wave; windspeed; Backscatter; Frequency; Geophysical measurements; Laser radar; Optical pulses; Remote sensing; Sea measurements; Sea surface; Surface emitting lasers; Surface waves;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/36.823912
Filename
823912
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