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Using ambient noise to extract coherent environmental information.

机译:使用环境噪声提取一致的环境信息。

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摘要

The ambient noise recorded in the ocean has traditionally been treated solely as the noise that a desired acoustic signal must overcome. Nevertheless, it contains environmental information relating to the physical characteristics of the ocean where the noise was recorded. Different types of ambient noise (i.e. diffuse fields vs. independent sources of opportunity) provide the signals for extracting various types of information from the environment. By cross-correlating time-aligned recordings of ambient noise, it is possible to extract time-of-arrival information of the acoustic ray path between the sensors which recorded the data -- even with no a priori knowledge of the sound field which contributed to the noise recording. When correlation processing fails due to anisotropy in the ambient noise field, information about the physical environment may still be extracted given trackable sources of opportunity.;Due to the nature of the ocean noise field and the fluctuations of the environment itself, difficulties arise in extracting the time-of-arrival information quickly and accurately before environmental changes corrupt the result. The use of arrays of sensors incorporating standard array processing techniques into the noise correlation function is shown to dramatically improve the correlation results both theoretically and when applied to experimental data. In addition, the effects of the directionality of the noise field and the relationship between the directionality of the incoming energy and the signal-to-noise ratio defined from the noise correlation function are examined both theoretically and using ambient noise recordings from experiments. When the ambient noise field is dominated by loud source events, these sources of opportunity may be used directly to invert for environmental characteristics. A model is presented for the use of independent, low frequency, loud sources of opportunity (ice calving events) to invert for the propagating sound speed over very long distances.
机译:传统上,海洋中记录的环境噪声仅被视为所需的声音信号必须克服的噪声。但是,它包含与记录噪音的海洋的物理特性有关的环境信息。不同类型的环境噪声(即扩散场与独立的机会源)提供了从环境中提取各种信息的信号。通过对时间对齐的环境噪声记录进行互相关,即使没有先验知识,也可以提取记录数据的传感器之间声波路径的到达时间信息噪音记录。当由于环境噪声场中的各向异性而导致相关处理失败时,在给定可追踪机会的情况下,仍可能会提取有关物理环境的信息。;由于海洋噪声场的性质和环境本身的波动,提取时会遇到困难在环境变化破坏结果之前,可以快速,准确地获取到达时间信息。传感器阵列的使用将标准阵列处理技术结合到噪声相关函数中,显示出在理论上和将其应用于实验数据时都可以显着改善相关结果。此外,理论上和使用实验中的环境噪声记录都检查了噪声场方向性的影响以及传入能量的方向性与由噪声相关函数定义的信噪比之间的关系。当周围的噪声场由声源事件主导时,这些机会源可直接用于环境特征的反转。提出了一个模型,用于使用独立的低频,大声机会(冰崩事件),以在很长的距离上反转传播声速。

著录项

  • 作者

    Fried, Stephanie Evelyn.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Physical Oceanography.;Physics Acoustics.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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