The state of the art in underwater acoustic telemetry
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- 1 January 2000
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Journal of Oceanic Engineering
- Vol. 25 (1), 4-27
- https://doi.org/10.1109/48.820733
Abstract
Progress in underwater acoustic telemetry since 1982 is reviewed within a framework of six current research areas: (1) underwater channel physics, channel simulations, and measurements; (2) receiver structures; (3) diversity exploitation; (4) error control coding; (5) networked systems; and (6) alternative modulation strategies. Advances in each of these areas as well as perspectives on the future challenges facing them are presented. A primary thesis of this paper is that increased integration of high-fidelity channel models into ongoing underwater telemetry research is needed if the performance envelope (defined in terms of range, rate, and channel complexity) of underwater modems is to expand.Keywords
This publication has 117 references indexed in Scilit:
- Adaptive decision feedback equalization: can you skip the training period?IEEE Transactions on Communications, 1998
- Multiuser detection in a horizontal underwater acoustic channel using array observationsIEEE Transactions on Signal Processing, 1997
- Spatial diversity equalization for MIMO ocean acoustic communication channelsIEEE Journal of Oceanic Engineering, 1996
- "BASS 300 PARACOM": a "model" underwater parametric communication systemIEEE Journal of Oceanic Engineering, 1996
- Adaptive detection for shallow-water acoustic telemetry with cochannel interferenceIEEE Journal of Oceanic Engineering, 1996
- Adaptive equalization techniques for acoustic telemetry channelsIEEE Journal of Oceanic Engineering, 1991
- A deep-ocean penetrator telemetry systemIEEE Journal of Oceanic Engineering, 1988
- Design and performance analysis of a Digital Acoustic Telemetry System for the short range underwater channelIEEE Journal of Oceanic Engineering, 1984
- Description of a secure reliable acoustic system for use in offshore oil Blowout Preventer (BOP) or wellhead controlIEEE Journal of Oceanic Engineering, 1984
- Multiple terminal acoustic communications system designIEEE Journal of Oceanic Engineering, 1980