Woodruff School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332-0405, USA.
J Acoust Soc Am. 2012 Aug;132(2):883-93. doi: 10.1121/1.4731231.
Extracting coherent wavefronts between passive receivers using cross-correlations of ambient noise (CAN) provides a means for monitoring the seismoacoustic environment without using active sources. However, using cross-correlations between single receivers can require a long recording time in order to extract stable coherent arrivals from CAN. This becomes an issue if the propagation medium fluctuates significantly during the recording period. To address this issue, this article presents a general spatio-temporal filtering procedure to enhance the emergence rate for coherent wavefronts extracted from time-averaged ambient noise correlations between two spatially separated arrays. The robustness of this array-based CAN technique is investigated using ambient shipping noise recorded over 24 h in the frequency band [250-850 Hz] on two vertical line arrays deployed 143 m apart in shallow water (depth 20 m). Experimental results confirm that the array-based CAN technique can significantly reduce the recording duration (e.g., from 22 h to 30 min) required for extracting coherent wavefronts of sufficient amplitude (e.g., 20 dB over residual temporal fluctations) when compared to conventional CAN implementations between single pairs of hydrophones. These improvements of the CAN technique could benefit the development of noise-based ocean monitoring applications such as passive acoustic tomography.
使用环境噪声互相关(CAN)从无源接收器中提取相干波前,为在不使用主动源的情况下监测地震声学环境提供了一种手段。然而,使用单个接收器之间的互相关可能需要很长的记录时间,以便从 CAN 中提取稳定的相干到达。如果在记录期间传播介质发生显著变化,这将成为一个问题。为了解决这个问题,本文提出了一种通用的时空滤波程序,以提高从两个空间上分开的阵列之间的时间平均环境噪声相关中提取的相干波前的出现率。使用在浅水中(深度 20 米)相隔 143 米部署的两个垂直线阵列记录的环境船舶噪声,在 [250-850 Hz] 的频带内进行了 24 小时的记录,对基于阵列的 CAN 技术的稳健性进行了研究。实验结果证实,与传统的单对水听器之间的 CAN 实现相比,基于阵列的 CAN 技术可以显著减少提取具有足够幅度的相干波前所需的记录时间(例如,相对于剩余时间波动增加 20 dB)。CAN 技术的这些改进可能有助于开发基于噪声的海洋监测应用,例如被动声层析成像。