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Passive acoustic detection and localization of whales: Effects of shipping noise in Saguenay-St. Lawrence Marine Park

机译:鲸鱼的无源声学检测和定位:Saguenay-St。船噪声的影响。劳伦斯海洋公园

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摘要

The performance of large-aperture hydrophone arrays to detect and localize blue and fin whales' 15-85 Hz signature vocalizations under ocean noise conditions was assessed through simulations from a normal mode propagation model combined to noise statistics from 15 960 h of recordings in Saguenay-St. Lawrence Marine Park. The probability density functions of 2482 summer noise level estimates in the call bands were used to attach a probability of detection/masking to the simulated call levels as a function of whale depth and range for typical environmental conditions. Results indicate that call detection was modulated by the calling depth relative to the sound channel axis and by modal constructive and destructive interferences with range. Masking of loud infrasounds could reach 40% at 30 km for a receiver at the optimal depth. The 30 LIB weaker blue whale D-call were subject to severe masking. Mapping the percentages of detection and localization allowed assessing the performance of a six-hydrophone array under mean- and low-noise conditions. This approach is helpful for optimizing hydrophone configuration in implementing passive acoustic monitoring arrays and building their detection function for whale density assessment, as an alternative to or in combination with the traditional undersampling visual methods. (c) 2008 Acoustical Society of America.
机译:通过从正常模式传播模型模拟并结合Saguenay- 15960 h记录的噪声统计数据,评估了大孔径水听器阵列在海洋噪声条件下检测和定位蓝鲸和长须鲸15-85 Hz签名发声的性能。圣劳伦斯海洋公园。呼叫频带中2482个夏季噪声水平估计值的概率密度函数用于将检测/掩蔽概率附加到典型环境条件下作为鲸鱼深度和范围的函数的模拟呼叫水平。结果表明,呼叫检测受到相对于声音通道轴的呼叫深度以及范围的模态相长和相消干扰的调制。对于处于最佳深度的接收器,大声次声的掩蔽在30 km处可能达到40%。 30 LIB较弱的蓝鲸D-call受到了严重的掩盖。映射检测和定位的百分比可以评估六水听器阵列在平均和低噪声条件下的性能。这种方法有助于优化水听器配置,以实现无源声学监测阵列并构建其检测功能以进行鲸鱼密度评估,以替代传统欠采样视觉方法或与之结合。 (c)2008年美国声学学会。

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