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Theoretical Analysis of a First-Order Azimuth-Steerable Superdirective Microphone Array

机译:一阶可方位定向超指向性麦克风阵列的理论分析

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摘要

A first-order azimuth-steerable superdirectional microphone response can be constructed by means of a linear combination of three eigenbeams (monopole and two orthogonal dipoles). Via this method, we can construct any first-order directivity pattern (monopole, cardioid, hypercardioid, etc.) that can be electronically steered to a certain angle on the 2-D plane to capture the desired signal. In this paper, the superdirectional responses are generated via a planar microphone array with a square geometry. We analyze the influence of spatial aliasing on the captured desired signal and the directivity index. Furthermore, we investigate the sensitivity for uncorrelated sensor noise and the sensitivity for phase- and magnitude-errors on the individual sensors. Finally, two rules of thumb are derived to choose the size of the microphone array.
机译:可以通过三个特征光束(单极子和两个正交偶极子)的线性组合来构造一阶可方位角控制的超指向麦克风响应。通过这种方法,我们可以构造任何一阶方向性模式(单极,心形,超心形等),这些模式可以在二维平面上以电子方式转向特定角度以捕获所需信号。在本文中,通过具有方形几何形状的平面麦克风阵列生成超指向响应。我们分析了空间混叠对捕获的所需信号和方向性指数的影响。此外,我们研究了不相关传感器噪声的灵敏度以及各个传感器上相位和幅度误差的灵敏度。最后,得出两个经验法则来选择麦克风阵列的大小。

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