Experimental studies of applications of time-reversal acoustics to non-coherent underwater communications

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February 7, 2012 | History

Experimental studies of applications of time-reversal acoustics to non-coherent underwater communications

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The most difficult problem in shallow underwater acoustic communications is considered to be the time-varying multipath propagation because it impacts negatively on data rates. Computationally intensive and complex signal processing algorithms are required to compensate for symbol overlapping. This thesis presents results of a tank scale experiment to test Time-Reversal Acoustics (TRA) approach for high data rate binary transmissions. TRA can environmentally adapt the acoustic propagation effects of a complex medium. Our results show the suitability of the TRA approach in underwater acoustic communications. The results also show good focusing properties at an intended target location. The focal region extends over a few wavelengths, outside of which scrambling of the message occurs, offering natural encryption. Range shifts of the focal region could be achieved by frequency shifting. We found that the time focusing is aperture-size independent, but the spatial focusing is aperture-size dependent. Overall, we showed that our algorithm can accomplish a fast, secure, and stable communication scheme with low computational complexity.

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Cover of: Experimental studies of applications of time-reversal acoustics to non-coherent underwater communications
Experimental studies of applications of time-reversal acoustics to non-coherent underwater communications
2000, Naval Postgraduate School, Available from National Technical Information Service
in English

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Edition Notes

Thesis advisor(s): Larraza, Andrès ; Smith, Kevin B.

"March 2000."

Thesis (M.S. in Engineering Acoustics and M.S. in Applied Physics) Naval Postgraduate School, March 2000.

Includes bibliographical references (p. 59-60)

"Approved for public release; distribution is unlimited."--Cover.

Also available online.

Mode of access: World Wide Web.

System requirements: Adobe Acrobat reader.

German Navy author.

dk/dk cc:9116 06/30/00

Published in
Monterey, Calif, Springfield, Va

The Physical Object

Pagination
x, 62 p. ;
Number of pages
62

ID Numbers

Open Library
OL25191687M
Internet Archive
experimentalstud00hein

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