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首页> 外文期刊>Journal of Sensors >Acoustic Source Localization via Subspace Based Method Using Small Aperture MEMS Arrays
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Acoustic Source Localization via Subspace Based Method Using Small Aperture MEMS Arrays

机译:使用小孔径MEMS阵列通过基于子空间的方法进行声源定位

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摘要

Small aperture microphone arrays provide many advantages for portable devices and hearing aid equipment. In this paper, a subspace based localization method is proposed for acoustic source using small aperture arrays. The effects of array aperture on localization are analyzed by using array response (array manifold). Besides array aperture, the frequency of acoustic source and the variance of signal power are simulated to demonstrate how to optimize localization performance, which is carried out by introducing frequency error with the proposed method. The proposed method for 5 mm array aperture is validated by simulations and experiments with MEMS microphone arrays. Different types of acoustic sources can be localized with the highest precision of 6 degrees even in the presence of wind noise and other noises. Furthermore, the proposed method reduces the computational complexity compared with other methods.
机译:小孔径麦克风阵列为便携式设备和助听器设备提供了许多优势。本文提出了一种基于子空间的小孔径阵列声源定位方法。通过使用阵列响应(阵列歧管)分析了阵列孔径对定位的影响。除了阵列孔径,还模拟了声源的频率和信号功率的方差,以演示如何优化定位性能,该方法是通过引入频率误差来实现的。通过使用MEMS麦克风阵列进行仿真和实验验证了所提出的5 mm阵列孔径的方法。即使存在风噪声和其他噪声,也可以以6度的最高精确度定位不同类型的声源。此外,与其他方法相比,所提出的方法降低了计算复杂度。

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