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首页> 外文期刊>The Journal of the Acoustical Society of America >Broadband classification and statistics of echoes from aggregations of fish measured by long-range, mid-frequency sonar
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Broadband classification and statistics of echoes from aggregations of fish measured by long-range, mid-frequency sonar

机译:通过远程,中频声纳测量的鱼聚集的宽带分类和统计数据

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摘要

For horizontal-looking sonar systems operating at mid-frequencies (1-10 kHz), scattering by fish with resonant gas-filled swimbladders can dominate seafloor and surface reverberation at longranges (i. e., distances much greater than the water depth). This source of scattering, which can be difficult to distinguish from other sources of scattering in the water column or at the boundaries, can add spatio-temporal variability to an already complex acoustic record. Sparsely distributed, spatially compact fish aggregations were measured in the Gulf of Maine using a long-range broadband sonar with continuous spectral coverage from 1.5 to 5 kHz. Observed echoes, that are at least 15 decibels above background levels in the horizontal-looking sonar data, are classified spectrally by the resonance features as due to swimbladder-bearing fish. Contemporaneous multi-frequency echosounder measurements (18, 38, and 120 kHz) and net samples are used in conjunction with physics-based acoustic models to validate this approach. Furthermore, the fish aggregations are statistically characterized in the long-range data by highly non-Rayleigh distributions of the echo magnitudes. These distributions are accurately predicted by a computationally efficient, physics-based model. The model accounts for beam-pattern and waveguide effects as well as the scattering response of aggregations of fish. (C) 2017 Acoustical Society of America.
机译:对于在中频(1-10 kHz)运行的横向看的声纳系统,用谐振气体填充的游泳者散射鱼可以在Longranges(即,距离大于水深的距离)主导海底和表面混响。这种散射源,这可能难以区分水柱或边界中的其他散射来源,可以为已经复杂的声记录增加时空变化。稀疏分布,使用远程宽带声纳在缅因州的海湾中测量空间紧凑的鱼聚集,其连续光谱覆盖范围为1.5至5 kHz。观察到的回声,这是至少15分贝以上的水平视声纳数据的背景水平,被分类频谱由谐振特征由于鳔轴承鱼。同期多频回声器测量(18,38和120 kHz)和网样本与基于物理的声学模型结合使用,以验证这种方法。此外,通过高度非瑞利分布的回波大小的远程数据在统计上表征的鱼聚集在统计上表征。这些分布通过计算效率基于物理的模型准确预测。该模型用于光束图案和波导效应以及鱼聚集的散射响应。 (c)2017年声学社会。

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