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Design and benchmark tests of a hydrophone array system for whale echolocation recordings

机译:用于鲸鱼回声定位记录的水听器阵列系统的设计和基准测试

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摘要

This paper describes in depth the design and application considerations of a computer based measurement system enabling 1 MS/s simultaneous sampling of 47 hydrophones for cross sectional recordings of echolocation beams of toothed whales (Odontocetes). An earlier prototype version of the system has previously only been presented as a brief proof of principle that did not offer a complete description of the software and hardware solution. Crucial hardware and software design considerations of the further developed system include the re-arm times of the burst mode sampling and the dual-core distributed execution of the software components. The rearm time was measured to 283 µs, using a 550 µs long sample window around each click. This enables burst mode sampling of clicks with an inter-click interval as short as 833 µs. It is shown through both synthetic benchmark tests of the system and through field measurements of bottlenose dolphins (Tursiops truncatus) and a beluga whale (Delphinapterus leucas) that it is capable of acquiring, analyzing and visualizing data in run-time. It operates effectively also in highly reverberant surroundings like concrete pools and shallow waters. Burst mode sampling allows the system to block reflections with 0.3 - 0.5 m longer propagation paths than the direct path. It is suggested that the system’s compliance to reverberant recording sites makes it valuable in future dolphin echolocation studies.
机译:本文深入描述了基于计算机的测量系统的设计和应用注意事项,该系统可同时对47台水听器进行1 MS / s采样,以用于齿鲸(齿齿动物)回声定位束的截面记录。该系统的早期原型版本以前仅作为简要的原理证明而提出,而没有提供对软件和硬件解决方案的完整描述。进一步开发的系统的关键硬件和软件设计考虑因素包括突发模式采样的重新布防时间和软件组件的双核分布式执行。重新测量时间为283 µs,每次单击时使用550 µs长的采样窗口。这样就可以在短于833 µs的点击间隔内对点击进行突发模式采样。通过系统的综合基准测试以及对宽吻海豚(Tursiops truncatus)和白鲸(Delphinapterus leucas)的现场测量表明,它能够在运行时获取,分析和可视化数据。它在混响度很高的环境(例如混凝土池和浅水区)中也能有效运行。突发模式采样允许系统以比直接路径长0.3-0.5 m的传播路径来阻挡反射。建议该系统对混响录音站点的遵从性使其在将来的海豚回声定位研究中有价值。

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