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Cognitive Computing and Cyber Physical Systems. Third EAI International Conference, IC4S 2022, Virtual Event, November 26-27, 2022, Proceedings

Research Article

Comparison of Acoustic Channel Characteristics in Shallow and Deep-Sea Water

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  • @INPROCEEDINGS{10.1007/978-3-031-28975-0_22,
        author={Ch. Venkateswara Rao and M. Ravi Sankar and T. Nalini Prasad and R. Devi and M. Sri Uma Suseela and V. Praveena and Y. Srinivas},
        title={Comparison of Acoustic Channel Characteristics in Shallow and Deep-Sea Water},
        proceedings={Cognitive Computing and Cyber Physical Systems. Third EAI International Conference, IC4S 2022, Virtual Event, November 26-27, 2022, Proceedings},
        proceedings_a={IC4S},
        year={2023},
        month={3},
        keywords={Absorption Attenuation Acoustic Channel Deepsea Sound Speed Temperature Transmission Loss Salinity},
        doi={10.1007/978-3-031-28975-0_22}
    }
    
  • Ch. Venkateswara Rao
    M. Ravi Sankar
    T. Nalini Prasad
    R. Devi
    M. Sri Uma Suseela
    V. Praveena
    Y. Srinivas
    Year: 2023
    Comparison of Acoustic Channel Characteristics in Shallow and Deep-Sea Water
    IC4S
    Springer
    DOI: 10.1007/978-3-031-28975-0_22
Ch. Venkateswara Rao1,*, M. Ravi Sankar2, T. Nalini Prasad3, R. Devi3, M. Sri Uma Suseela1, V. Praveena1, Y. Srinivas1
  • 1: Department of ECE, Vishnu Institute of Technology
  • 2: Department of ECE
  • 3: Department of ECE, SRKR Engineering College
*Contact email: venkateswararao.c@vishnu.edu.in

Abstract

The vital technology in the marine industry, underwater acoustic communication (UWAC), which has a crucial subsidiary role in undersea surveillance and military maneuvers. Now a days, the utmost prevalent and enduring system for undersea exploration is UWAC due to diminutive attenuation (signal reduction) of sound. However, the sound speed has abnormal variations with respect to the ocean columns. Usually, ocean water columns have been classified into two types based on the depth; such as shallow (0–100 m) and Deep-sea water (100-few thousands of kilometers). The physical (temperature, salinity) and chemical characteristics (pH, dissolved oxygen, nutrient salts) of these water divisions has abnormal variations with respect to the topographical regions and water depth. In addition, numerous factors such as; wave speed; multipath, interference, doppler spread have shown a great influence on sound propagation in underwater. Hence, a proficient channel modelling is required to analyze the effect of aforementioned parameters in order to achieve reliable communication in underwater environment. Therefore, in this work an acoustic channel model has been proposed for analyzing the sound speed variations and transmission losses in shallow and Deep-sea water scenarios. The effect of temperature, salinity on sound speed with respect to water depth has been estimated. Finally, the simulations outcomes of both shallow and Deep-sea water have been compared in terms of attenuation, sound speed, and transmission losses.

Keywords
Absorption Attenuation Acoustic Channel Deepsea Sound Speed Temperature Transmission Loss Salinity
Published
2023-03-25
Appears in
SpringerLink
http://dx.doi.org/10.1007/978-3-031-28975-0_22
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