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Rotation-Robust Beamforming Based on Sound Field Interpolation with Regularly Circular Microphone Array

机译:基于具有规则圆形麦克风阵列的声场插值的旋转 - 鲁棒波束成形

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In this paper, we present a novel framework of beamforming robust for a microphone array rotation. In most array signal processing methods, the time-invariant transfer system from a source to a microphone is assumed for calculating a spatial filter. This assumption makes it difficult to use the microphone array in real situations since sources and the microphone array may move. In this work, we focus on one such movement, the array’s rotation. The key in our method is to use a regularly circular microphone array where microphones are equally spaced on a circle’s circumference. Based on this, we propose a method to interpolate the sound field on the circumference. The interpolation enables us to estimate the signals at the microphone positions before the rotation even when the array rotates. Hence, the conventional array signal processing assuming the time-invariant system is applicable. Simulation results indicated that the proposed method improves the beamformer’s performance under the array rotation.
机译:在本文中,我们为麦克风阵列旋转呈现了一种用于光束形成稳健的新框架。在大多数阵列信号处理方法中,假设从源到麦克风的时间不变传输系统用于计算空间滤波器。这种假设使得很难在实际情况下使用麦克风阵列,因为源和麦克风阵列可以移动。在这项工作中,我们专注于一个这样的运动,阵列的旋转。我们方法中的关键是使用定期圆形麦克风阵列,其中麦克风在圆周的圆周上同样间隔。基于此,我们提出了一种方法来在圆周上插入声场。插值使我们能够在阵列旋转时旋转之前估计在旋转之前的麦克风位置处的信号。因此,假设时间不变系统的传统阵列信号处理是适用的。仿真结果表明,所提出的方法改善了阵列旋转下的波束形成器的性能。

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