Propagation and Scattering Effects in Underwater Acoustic Communication Channels

Paul van Walree

IEEE Journal of Oceanic Engineering · 2013 · 199 citations · 90 references

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TL;DR

The study systematically measured shallow‑water acoustic propagation across northern Europe, covering continental shelves, fjords, bays, channels, and the Baltic Sea, using frequencies from 2 to 32 kHz. The results reveal a diverse set of channels that resist a single typical model, and highlight forward propagation effects important for designing modulation schemes, network protocols, and simulations.

Abstract

Systematic measurements were performed to characterize shallow-water acoustic propagation channels for applications in the field of underwater communications. The survey was conducted in northern Europe and covers the continental shelf, Norwegian fjords, a sheltered bay, a channel, and the Baltic Sea. The measurements were performed in various frequency bands between 2 and 32 kHz. The outcome of the study is a variety of channels that differ in many ways, defying any attempt to define a typical acoustic communication channel. Miscellaneous forward propagation effects are presented, which are relevant to channel models for the design of modulation schemes, network protocols, and simulation environments.

References

90