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Application of an unsupervised clustering algorithm on in situ broadband acoustic data to identify different mesopelagic target types

机译:无监督聚类算法在原位宽带声学数据中的应用识别不同的介绍目标类型

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The mesopelagic zone (200-1000 m depth) contains high fish species diversity but biomass and abundances are uncertain yet essential to understand ecosystem functioning. Hull-mounted acoustic systems (usually 38 kHz) often make assumptions on average target strength (TS) of mesopelagic fish assemblages when estimating biomass/abundance. Here, an unsupervised clustering algorithm was applied on broadband acoustic data (54-78 kHz), collected by a towed instrumented platform in the central Northeast Atlantic, to identify different mesopelagic target types based on similarity of individual TS spectra. Numerical density estimates from echo-counting showed spatial differences in vertical distribution patterns of the different target types and TS spectra data suggested that30% of the gas-bearing targets had high resonance frequencies (60 kHz) with low scattering strength at 38 kHz. This conceptual study highlights the importance of separating targets into different target groups to obtain correct backscatter information and to account for all relevant scatterers when estimating average TS at 38 kHz, in order to achieve more accurate biomass/abundance estimates. It furthermore demonstrates the use of a towed broadband acoustic platform for fine-scale numerical density estimates as a complementary method to hull-mounted acoustic data to increase knowledge on mesopelagic ecosystem structure.
机译:中孔区(深度200-1000米深度)含有高鱼类多样性,但生物质和丰富是不确定的,以了解生态系统功能。船体安装的声学系统(通常38 kHz)通常在估计生物质/丰度时对叶尾鱼组合的平均目标强度(TS)进行假设。这里,在宽带声学数据(54-78 kHz)上应用了无监督的聚类算法,由中央东北大西洋中的牵引仪表平台收集,以确定基于单独TS光谱的相似性的不同的介绍性目标类型。来自回声计数的数值密度估计显示不同目标类型的垂直分布模式的空间差异,并且TS光谱数据表明,30%的含气目标具有高谐振频率(& 60 kHz),散射强度为38千赫。这种概念研究突出了将目标分离成不同目标组的重要性,以获得正确的反向散射信息,并在估计38 kHz的平均TS时占所有相关散射体,以实现更准确的生物量/丰度估计。其进一步证明了使用牵引宽带声学平台进行微尺度数值密度估计作为船体安装的声学数据的互补方法,以提高介绍内部生态系统结构的知识。

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