Publication | Open Access
Measurement and Modeling of Narrowband Channels for Ultrasonic Underwater Communications
48
Citations
18
References
2016
Year
EngineeringUnderwater Acoustic CommunicationAcoustical OceanographyUnderwater AcousticFading ModelOceanographyUltrasonic Underwater CommunicationsChannel ModelingOcean AcousticsUnderwater NetworksMediterranean Shallow WatersUnderwater Sensor NetworkUnderwater CommunicationOcean InstrumentationUnderwater ChannelsUnderwater Wireless NetworksUnderwater Optical CommunicationUltrasoundAcoustic TechnologySignal ProcessingUnderwater Wireless CommunicationsOcean EngineeringOcean AcousticChannel ModelUnderwater Sensing
Underwater acoustic sensor networks are a promising technology that allow real-time data collection in seas and oceans for a wide variety of applications. Smaller size and weight sensors can be achieved with working frequencies shifted from audio to the ultrasonic band. At these frequencies, the fading phenomena has a significant presence in the channel behavior, and the design of a reliable communication link between the network sensors will require a precise characterization of it. Fading in underwater channels has been previously measured and modeled in the audio band. However, there have been few attempts to study it at ultrasonic frequencies. In this paper, a campaign of measurements of ultrasonic underwater acoustic channels in Mediterranean shallow waters conducted by the authors is presented. These measurements are used to determine the parameters of the so-called κ-μ shadowed distribution, a fading model with a direct connection to the underlying physical mechanisms. The model is then used to evaluate the capacity of the measured channels with a closed-form expression.
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