首页> 外文会议>2016 IEEE International Workshop on Acoustic Signal Enhancement >Performance analysis of a dual microphone superdirective beamformer and approximate expressions for the near-field propagation regime
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Performance analysis of a dual microphone superdirective beamformer and approximate expressions for the near-field propagation regime

机译:双麦克风超指向波束形成器的性能分析和近场传播机制的近似表达式

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A linear array of sensors with small spacing (compared to the wavelength) can be processed with superdirective beamforming. Specifically when applying minimum variance distortionless response (MVDR) weights designed for a diffuse noise-field, high gains are attainable in theory. A classical result relating to the far-field regime states that the gain with respect to diffuse noise (i.e., the directivity factor) for a source in the endfire direction may approach the number of sensors squared (N2). However, as the wavelength increases, the beamformer encounters increasingly severe robustness issues. Results pertaining to the near-field regime are less well known. In this paper we analyze MVDR beamforming in a generic dual-microphone array scenario. Our analysis is not restricted to the far-field regime. We derive precise expressions for the directivity factor and the white-noise gain, as well as simplified approximations for the near- and far-field regimes. We show that in the near-field regime the directivity factor approaches infinity as the wavelength increases, and that the white-noise gain depends only on the ratio between the distance from the source to the distance between sensors. These properties of the beamformer (BF) behave differently than in the far-field regime.
机译:具有小间距(与波长相比)的传感器线性阵列可以通过超指向性波束成形进行处理。具体来说,当应用为扩散噪声场设计的最小方差无失真响应(MVDR)权重时,理论上可以获得高增益。与远场状态有关的经典结果表明,在端射方向上源的相对于漫射噪声的增益(即方向性因子)可能接近传感器的平方(N2)。但是,随着波长的增加,波束形成器会遇到越来越严重的鲁棒性问题。关于近场体制的结果鲜为人知。在本文中,我们分析了通用双麦克风阵列场景中的MVDR波束形成。我们的分析不限于远场政权。我们导出了方向性因子和白噪声增益的精确表达式,以及近场和远场方案的简化近似。我们表明,在近场状态下,方向性因子随着波长的增加而接近无穷大,并且白噪声增益仅取决于从光源到传感器之间距离的比值。波束形成器(BF)的这些特性与远场方式不同。

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