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Analysis of Ambient Noise Spectrum Level Correlation Characteristics in the China Sea

机译:中国海洋环境噪声谱水平相关特征分析

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摘要

The ambient noise field in the ocean is formed by a mixture of many source types, such as seismic noise, marine noise, shipping noise, and wind-generated noise. The correlation matrices of the ambient noise spectrum levels offer a promising approach for identifying and isolating the active source mechanisms in ambient noise datasets. This study attempts to use frequency correlation matrices to examine inter-frequency relationships and identify frequency bands that are dominated by specific sources present in samples of ambient noise. Deep-ocean ambient noise recorded by hydroacoustic monitoring systems in the East China Sea and South China Sea was used to analyze the frequency correlation characteristics over a broadband frequency range, with a focus on the contribution of wind-related and shipping-related source mechanisms to the overall ambient noise field at various frequencies. The primary sources observed in both the South China Sea and East China Sea were shipping sources and wind sources. During the observation window, wind was responsible for a significant amount of the ambient noise energy above 477 Hz in the East China Sea, while the corresponding frequency threshold was shifted up to 575 Hz in the South China Sea. Another interesting feature was also observed in the East China Sea: a higher degree of correlation was found between the levels at the wind noise dominated frequencies and mixture noise (mainly consisting of wind noise and shipping noise) dominated frequencies at the upper receiver than at the lower receiver. Data analysis results show that the cause of this effect is that shipping activity contributes more to the soundscape at the lower receiver than at the upper receiver.
机译:海洋中的环境噪声场由许多源类型的混合物形成,例如地震噪声,海洋噪声,运输噪声和风力产生的噪声。环境噪声频谱级别的相关矩阵提供了一种有希望的方法,用于识别和隔离环境噪声数据集中的有源源机制。该研究试图使用频率相关矩阵来检查频率相互关系,并识别由存在于环境噪声的样本中存在的特定源的频带。东海和南海海洋水声监测系统记录的深海洋环境噪声用于分析宽带频率范围内的频率相关特性,重点是风力相关和与运输相关的源机制的贡献各种频率的总环境噪声场。南海和东海两家主要来源都是航运来源和风源。在观察窗口期间,风负责东海477赫兹高于477赫兹的大量环境噪声能量,而相应的频率阈值将在南海转移到575赫兹。另一个有趣的特征在东海也观察到:风噪声占据频率和混合噪声(主要由风噪声和运输噪声组成)在上部接收器的占据频率之间的水平之间发现了更高程度的相关性。较低的接收器。数据分析结果表明,这种效果的原因是运输活动在较低接收器处的Soundscape贡献比上接收器更多。

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  • 来源
    《Quality Control, Transactions》 |2020年第2020期|7217-7226|共10页
  • 作者

    Zhou Jianbo;

  • 作者单位

    Northwestern Polytech Univ Sch Marine Sci & Technol Xian 710072 Peoples R China|Northwestern Polytech Univ Key Lab Ocean Acoust & Sensing Minist Ind & Informat Technol Xian 710072 Peoples R China|Chinese Acad Sci Inst Acoust State Key Lab Acoust Beijing 100190 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ambient noise; correlation matrices; wind-related noise; shipping-related noise;

    机译:环境噪声;相关矩阵;风相关的噪声;与运输相关的噪声;

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