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Optimizing passive acoustic systems for marine mammal detection and localization: Application to real-time monitoring north Atlantic right whales in Gulf of St. Lawrence

机译:优化海洋哺乳动物检测与定位的无源声学系统:在圣劳伦斯湾实时监测北大西洋右鲸的应用

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摘要

This study addresses the problem of determining optimal design of passive acoustic monitoring (PAM) systems for detecting and localizing whale calls in real-time in variable-noise environments. The performance of various PAM system is assessed using the detection theory and simulation modeling applied to the context of North Atlantic right whale (NARW) upcalls in feeding grounds and noisy shipping corridor of the Gulf of St. Lawrence. Realistic simulations are performed using an estimated NARW upcall source level (SL), the actual shipping traffic, measured local fleet ship SLs, and transmission loss (TL) from a regional 2.5-D propagation model accounting for the bathymetric and environmental structures. The comparisons consider single-hydrophone and hydrophone-array PAM systems, mounted on buoys, gliders, or cabled to shore and three families of NARW upcall detectors. The targeted performance is a low false-alarm rate of 1 per day and a detection probability 0.5. The time-frequency-based detector offers the best trade-off between detection performance and robustness against NARW upcall variability. The effective detection ranges are similar to 15 times lower with single-hydrophone systems compared to hydrophone-arrays, whose beamforming enhances the signal in the upcall direction while damping interfering discrete noise from nearby transiting ships in other directions. Detecting and localizing NARWs in the large target areas (10000-km(2) scale) is possible with a few well-located arrays of 10-20 hydrophones, which appears as the optimal cost/performance trade-off. Crown Copyright (C) 2021 Published by Elsevier Ltd. All rights reserved.
机译:本研究解决了用于在可变噪声环境中实时检测和定位鲸鱼呼叫的被动声监控(PAM)系统的最佳设计的问题。通过应用于北大西洋右鲸(NARW)喂养地面和圣劳伦斯湾的嘈杂运输走廊的北大西洋右鲸(NARW)Upcalls的背景来评估各种PAM系统的性能。使用估计的NARW UPCALL源电平(SL),实际运输流量,测量的本地车队船SLS和来自区域2.5-D传播模型的传输丢失(TL)进行现实模拟,用于占碱基和环境结构。比较考虑单个水听器和流水声阵列PAM系统,安装在浮标,滑翔机或连接到岸边和三个NARW Upcall探测器的家庭上。目标性能是每天1的低假警报率,以及检测概率和GT; 0.5。基于时频的探测器提供了对NARW UPCALL可变性的检测性能和鲁棒性之间的最佳权衡。与流水声阵列相比,有效检测范围类似于单水电音系统的15倍,其波束形成增强了UPCOLL方向上的信号,同时阻尼从附近的过渡船舶在其他方向上干扰离散噪声。在大目标区域(& 10000 km(2)尺度)中检测和定位鼻部,少数10-20个水机的阵列可以作为最佳成本/性能折衷。 Crown版权所有(c)2021由elestvier有限公司出版。保留所有权利。

著录项

  • 来源
    《Applied Acoustics》 |2021年第7期|107949.1-107949.19|共19页
  • 作者单位

    CHORUS Res Inst Phelma Minatec 3 Parvis Louis Neel F-38000 Grenoble France;

    Fisheries & Oceans Canada Maurice Lamontagne Inst 850 Route Mer POB 1000 Mont Joli PQ G5H 3Z4 Canada|Univ Quebec Rimouski DFO Chair Underwater Acoust Marine Sci Inst Rimouski PQ G5L 3A1 Canada;

    Fisheries & Oceans Canada Maurice Lamontagne Inst 850 Route Mer POB 1000 Mont Joli PQ G5H 3Z4 Canada;

    Fisheries & Oceans Canada Maurice Lamontagne Inst 850 Route Mer POB 1000 Mont Joli PQ G5H 3Z4 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrophone arrays; Beamforming; PAM performances; Seaway; Shipping noise;

    机译:水听器阵列;波束成形;PAM表演;海路;运输噪音;

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