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Use of Unidirectional Microphones and Signal Processing for the Localization of Sound Sources

机译:使用单向麦克风和信号处理来定位声源

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Targeting people or objects by passive acoustic sensors is of relevant interest in several military and civil applications, spanning from surveillance and patrolling systems to teleconferencing and human-robot interaction. To date methods and patents focused solely on the use of beamforming algorithms to compute the time of arrival of sounds detected by using omnidirectional microphones (OM) sparsely deployed. This paper describes the preliminary results of a novel approach devoted to the localization of ground borne acoustic sources. It is demonstrated that an array made of at least three unidirectional microphones can be exploited to detect the position the source. Pulse features extracted either in the time domain or in the frequency domain are used to identify the direction of the incoming sound. This information is then fed into a semi-analytical algorithm devoted to the identification of the source location. The novelty of the method presented here consists on the use of unidirectional microphones rather than omnidirectional microphones and on the ability to extract the sound direction by considering features like the pulse amplitude rather than the pulse arrival time. It is believed that this method may pave the road toward a new generation of reduced size sound detectors and localizers.
机译:在监视和巡逻系统,电话会议和人机交互等多种军事和民用应用中,通过无源声学传感器瞄准人或物体都具有重要意义。迄今为止,方法和专利仅集中于使用波束成形算法来计算通过使用稀疏部署的全向麦克风(OM)检测到的声音的到达时间。本文介绍了致力于地面传播声源定位的一种新方法的初步结果。已经证明,可以利用至少三个单向麦克风组成的阵列来检测源的位置。在时域或频域中提取的脉冲特征用于识别传入声音的方向。然后,此信息被送入专门用于识别源位置的半分析算法中。这里介绍的方法的新颖性在于使用单向麦克风而不是全向麦克风,以及通过考虑诸如脉冲幅度而不是脉冲到达时间之类的特征来提取声音方向的能力。相信该方法可以为新一代的尺寸减小的声音检测器和定位器铺平道路。

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