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A highly scalable spherical microphone array based on an orthonormal decomposition of the soundfield

机译:一种高度可伸缩的球形麦克风阵列,基于Soundfield的正式分解

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This paper describes a beamforming microphone array consisting of pressure microphones that are mounted on the surface of a rigid sphere. The beamformer is based on a spherical harmonic decomposition of the soundfield. We show that this allows a simple and computationally effective, yet flexible beamformer structure. The look-direction can be steered to any direction in 3-D space without changing the beampattern. In general the number of sensors and their location is quite arbitrary as long as they hold a certain orthogonality constraint that we derived. For a practical example we chose a spherical array with 32 elements. The microphones are located at the center of the faces of a truncated icosahedron. The radius of the sphere is 5 cm. With this setup we can achieve a Directivity Index of 12 dB and higher. The operating frequency range is from 100 Hz to 5 kHz.
机译:本文描述了由安装在刚性球体表面上的压力麦克风组成的波束形成麦克风阵列。波束形成器基于Soundfield的球形谐波分解。我们表明这允许简单且计算的有效且灵活的波束形成器结构。看起来可以在3-D空间中的任何方向转向,而不改变横梁。通常,传感器的数量及其位置是非常任意的,只要它们持有我们派生的某个正交性约束即可。对于一个实用的例子,我们选择了带有32个元素的球面阵列。麦克风位于截短的Icosahedron的面部的中心。球体的半径为5厘米。使用此设置,我们可以实现12 dB和更高的方向性指数。工作频率范围为100 Hz至5 kHz。

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