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利用低采样率数据在薄玻璃板中定位声源。

Locating the acoustic source in thin glass plate using low sampling rate data.

作者信息

Hoseini Sabzevari S Amir, Moavenian Majid

机构信息

Mech. Eng. Dept., Ferdowsi University of Mashhad, Iran.

Mech. Eng. Dept., Ferdowsi University of Mashhad, Iran.

出版信息

Ultrasonics. 2016 Aug;70:1-11. doi: 10.1016/j.ultras.2016.04.008. Epub 2016 Apr 13.

Abstract

Acoustic source localization is an important step for structural health monitoring (SHM). There are many research studies dealing with localization based on high sampling rate data. In this paper, for the first time, acoustic source is localized on an isotropic plate using low sampling rate data. Previous studies have mainly used a cluster of specific sensors to easily record high sampling rate signals containing qualitative time domain features. This paper proposes a novel technique to localize the acoustic source on isotropic plates by simply implementing a combination of two simple electret microphones and Loci of k-Tuple Distances (LkTD) from the two sensors with low sampling rate data. In fact the method proposes substitution of previous methods based on solving the system of equations and increasing the number of sensors by implementing the selection of LkTD. Unlike most previous studies, estimation of time difference of arrival (TDOA) is based on the frequency properties of the signal rather than it's time properties. An experimental set-up is prepared and experiments are conducted to validate the proposed technique by prediction of the acoustic source location. The experimental results show that TDOA estimations based on low sampling rate data can produce more accurate predictions in comparison with previous studies. It is also shown that the selection of LkTD on the plate has noticeable effects on the performance of this technique.

摘要

声源定位是结构健康监测(SHM)的重要一步。有许多研究致力于基于高采样率数据的定位。本文首次利用低采样率数据在各向同性板上进行声源定位。以往的研究主要使用一组特定的传感器来轻松记录包含定性时域特征的高采样率信号。本文提出了一种新颖的技术,通过简单地将两个简单的驻极体麦克风与来自两个传感器的k元组距离轨迹(LkTD)相结合,并利用低采样率数据,在各向同性板上对声源进行定位。实际上,该方法提出通过实施LkTD的选择来替代基于求解方程组和增加传感器数量的先前方法。与大多数先前的研究不同,到达时间差(TDOA)的估计基于信号的频率特性而非时间特性。准备了一个实验装置,并通过预测声源位置进行实验以验证所提出的技术。实验结果表明,与先前的研究相比,基于低采样率数据的TDOA估计可以产生更准确的预测。还表明在板上选择LkTD对该技术的性能有显著影响。

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