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使用匹配统计矩方法在随机非均匀介质中进行声源定位。

Sound source localization in a randomly inhomogeneous medium using matched statistical moment method.

作者信息

Wang Xun, Khazaie Shahram, Sagaut Pierre

机构信息

Aix-Marseille Université, CNRS, Centrale Marseille, M2P2 UMR 7340, 13451 Marseille, France.

出版信息

J Acoust Soc Am. 2015 Dec;138(6):3896-906. doi: 10.1121/1.4938238.

Abstract

This paper investigates the problem of sound source localization from acoustical measurements obtained by an array of microphones. The sound propagation medium is assumed to be randomly inhomogeneous, being modelled by a random function of space. In this case, classical source localization methods (e.g., beamforming, near-field acoustical holography, and time reversal) cannot be used anymore. Therefore, an approach based on the statistical moments of acoustical measurement is proposed to solve the aforementioned problem. In this work, a Karhunen-Loève expansion is used so that the random medium can be represented by a small number of uncorrelated and identically distributed random variables. The statistical characteristics of the measurements in terms of probability density function and statistical moments are also studied. Then, the sound source is localized by minimizing the error of statistical moments between the real measurements obtained from the microphone array and the measurements simulated from an assumed source. Finally, a numerical example is introduced to justify the proposed method. This experiment shows that the random field can be replicated by a very small number of random variables, the statistical moments of measurements guarantee the convergence, and the source location can be accurately estimated using the proposed source localization method.

摘要

本文研究了利用麦克风阵列获得的声学测量结果进行声源定位的问题。假设声音传播介质是随机非均匀的,由空间的随机函数建模。在这种情况下,经典的声源定位方法(如波束形成、近场声学全息和时间反转)不再适用。因此,提出了一种基于声学测量统计矩的方法来解决上述问题。在这项工作中,使用了卡尔胡宁 - 勒夫展开,以便随机介质可以由少量不相关且同分布的随机变量表示。还研究了测量结果在概率密度函数和统计矩方面的统计特性。然后,通过最小化从麦克风阵列获得的实际测量结果与从假设声源模拟的测量结果之间的统计矩误差来定位声源。最后,引入了一个数值例子来验证所提出的方法。该实验表明,随机场可以由极少数随机变量复制,测量的统计矩保证了收敛性,并且使用所提出的声源定位方法可以准确估计声源位置。

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