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Remote listening and passive acoustic detection in a 3-D environment.

机译:在3-D环境中进行远程收听和被动声学检测。

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摘要

Teleconferencing environments are a necessity in business, education and personal communication. They allow for the communication of information to remote locations without the need for travel and the necessary time and expense required for that travel. Visual information can be communicated using cameras and monitors. The advantage of visual communication is that an image can capture multiple objects and convey them, using a monitor, to a large group of people regardless of the receiver's location. This is not the case for audio. Currently, most experimental teleconferencing systems' audio is based on stereo recording and reproduction techniques. The problem with this solution is that it is only effective for one or two receivers. To accurately capture a sound environment consisting of multiple sources and to recreate that for a group of people is an unsolved problem. This work will focus on new methods of multiple source 3-D environment sound capture and applications using these captured environments.;Using spherical microphone arrays, it is now possible to capture a true 3-D environment A spherical harmonic transform on the array's surface allows us to determine the basis functions (spherical harmonics) for all spherical wave solutions (up to a fixed order). This spherical harmonic decomposition (SHD) allows us to not only look at the time and frequency characteristics of an audio signal but also the spatial characteristics of an audio signal. In this way, a spherical harmonic transform is analogous to a Fourier transform in that a Fourier transform transforms a signal into the frequency domain and a spherical harmonic transform transforms a signal into the spatial domain. The SHD also decouples the input signals from the microphone locations. Using the SHD of a soundfield, new algorithms are available for remote listening, acoustic detection, and signal enhancement The new algorithms presented in this paper show distinct advantages over previous detection and listening algorithms especially for multiple speech sources and room environments. The algorithms use high order (spherical harmonic) beamforming and power signal characteristics for source localization and signal enhancement These methods are applied to remote listening, surveillance, and teleconferencing.
机译:电话会议环境是商务,教育和个人通信中的必要条件。它们允许将信息传递到偏远地区,而无需旅行,旅行所需的时间和费用。视觉信息可以使用摄像机和监视器进行通信。视觉交流的优势在于,图像可以捕获多个对象,并使用监视器将它们传送到一大群人,而与接收者的位置无关。音频不是这种情况。当前,大多数实验性电话会议系统的音频都基于立体声记录和再现技术。该解决方案的问题在于它仅对一个或两个接收器有效。准确捕获由多个源组成的声音环境并为一群人重新创建声音环境是一个尚未解决的问题。这项工作将集中于多源3-D环境声音捕获的新方法以及使用这些捕获环境的应用程序。使用球形麦克风阵列,现在就可以捕获真正的3-D环境阵列表面上的球形谐波变换可以实现我们确定所有球面波解(固定阶数)的基函数(球谐)。这种球形谐波分解(SHD)使我们不仅可以查看音频信号的时间和频率特性,还可以查看音频信号的空间特性。以此方式,球形谐波变换类似于傅立叶变换,其中傅立叶变换将信号变换到频域,而球形谐波变换将信号变换到空间域。 SHD还可以将输入信号与麦克风位置分离。使用声场的SHD,可以使用新算法进行远程监听,声音检测和信号增强。本文介绍的新算法显示出优于以前的检测和监听算法的明显优势,尤其是对于多个语音源和房间环境。该算法使用高阶(球谐)波束成形和功率信号特性进行源定位和信号增强。这些方法适用于远程监听,监视和电话会议。

著录项

  • 作者

    Barnhill, Colin.;

  • 作者单位

    The Johns Hopkins University.;

  • 授予单位 The Johns Hopkins University.;
  • 学科 Engineering Electronics and Electrical.;Physics Acoustics.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:12

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