IEEE Journal of Oceanic Engineering · 2013 · 199 citations · 90 references
Underwater Wireless CommunicationsOcean AcousticsUnderwater NetworksEngineeringOcean EngineeringUnderwater Wireless NetworksSystematic MeasurementsUnderwater Acoustic CommunicationAcoustical OceanographyUnderwater AcousticUnderwater CommunicationsOceanographyOcean AcousticUnderwater CommunicationUnderwater Sensor NetworkBaltic Sea
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.
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.
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Anthropogenic and natural sources of ambient noise in the ocean
Marine Ecology Progress Series · 2009 · 1.1K citations · Full text