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Close range ship noise cross correlations with a vector sensor in view of geoacoustic inversion

机译:近距离船噪声交叉相关与矢量传感器视图鉴于地理声反转

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Distant ship noise has been utilized for geoacoustic inversion and ocean monitoring for many years. In a shallow water experiment, Makai 2005, a 4-element acoustic vector sensor array was deployed at the stern of the research vessel R/V Kilo Moana. The recorded engine noise of R/V Kilo Moana during its dynamic positioning was analyzed by the DEMON (Detection of Envelope Modulation on Noise) method. The strongest modulation frequency band of the ship noise was found by a group of band-pass filters for further data processing. Multipath arrivals in the vertical particle velocity have higher signal-to-noise ratios than those in the horizontal particle velocities because of steep arrival directions. By exploiting this advantage, the cross-correlation of broadband ship noise between the pressure and the vertical particle velocity can be used for multipath information exploration. Since ship noise is often characterized as continuous broadband noise plus strong tonal noise, the cross-correlation of tonal noise would dominate that of broadband noise, and consequently cover the multipath arrival pattern. Therefore, spectral weighting functions are applied in order to reduce the noise contamination and ensure sharp multipath peaks in the cross-correlation. For engine noise emitted by the dynamically positioned ship, a short correlation time of 0.4s was used in order to keep the time delay fluctuation details of multipath arrivals. Clear multiple arrivals are seen in the cross-correlation of different arrivals, and verified by the ray tracing program TRACEO. The results demonstrate the potential of only one acoustic vector sensor in applications of source localization and geoacoustic inversion.
机译:多年来,遥远的船舶噪音已用于地理声反转和海洋监测。在浅水实验中,Makai 2005,一个4元件声学矢量传感器阵列部署在研究容器R / V Kilo Moana的船尾。通过恶魔(噪声噪声调制检测)分析了在其动态定位过程中R / V Kilo Moana的记录发动机噪声。由一组带通滤波器找到船舶噪声的最强调制频带,用于进一步的数据处理。由于陡峭的到来方向,垂直粒子速度中的多径抵达具有比水平粒子速度中更高的信噪比。通过利用这种优点,可以使用宽带船噪声与垂直粒子速度之间的互相关可用于多径信息探索。由于船舶噪声通常被称为连续的宽带噪声加上强色调噪声,因此音调噪声的互连将占据宽带噪声的互联网,因此覆盖多径到达模式。因此,应用光谱加权函数以减少噪声污染并确保互相关中的尖锐多径峰值。对于由动态定位的船发射的发动机噪声,使用0.4s的短相关时间来保持多径到达的时间延迟波动细节。在不同到达的互相关中可以清除多个抵达,并由Ray跟踪程序Traceo验证。结果证明了在源定位和地理声反转的应用中只有一个声学矢量传感器的电位。

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