The Journal of the Marine Acoustics Society of Japan
Online ISSN : 1881-6819
Print ISSN : 0916-5835
ISSN-L : 0916-5835
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  • Masahiko FURUSAWA
    2025Volume 52Issue 3 Pages 65-79
    Published: July 01, 2025
    Released on J-STAGE: July 16, 2025
    JOURNAL FREE ACCESS

    Acoustic measurement of seabed backscatter is very effective due to its ability to operate remotely and continuously. A quantitative or scientific echosounder (QES) has been developed to measure fish backscatter for estimating fish abundance, but it can also be readily applied to measure backscatter from other marine or underwater objects. This paper describes a method for measuring seabed backscatter using the QES. First, we present a technique developed by the author’s group with some reinforcement particularly in error estimation. Next, we develop a new theoretical model applicable to sloping seabeds and inclined acoustic beams. The analysis shows that, by using the average volume backscattering measurement function (echo integration), we can accurately measure seabed backscatter, even on the sloping seabeds or during transduce motion. Moreover, for a largely oblique beam, such as 45°, backscatter can be measured with appropriate correction, and the results can be used to calibrate a multi-beam echosounder.

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