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Beamforming performance of circular microphone array on spherical platform near bottom boundary

机译:球形麦克风阵列在底部边界附近的球形平台上的波束形成性能

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Spherical microphone arrays have been extensively studied for multimedia applications by both academic and industrial communities. General assumption of such study is based upon a planar wave traveling in free space model. However, in practical applications, acoustic wave reflections from boundary of a confined environment such as rooms or nearby furniture's carrying the array may degrade array performance significantly. In this paper, we present an approach for beamforming and direction of arrival (DOA) estimation using circular microphone array mounted on the equator of a sphere near a bottom boundary where the bottom reflection is dominant over other reflection, which corresponds to the applications such as spherical microphone array set on table or floor. We examine impact of reverberation to the beamforming performance and propose an algorithm to improve the microphone array performance. We first introduce an acoustic spherical scattering model to provide a theoretical background. The boundary reflection model is subsequently developed based on two-path ray theory. We further propose an approach using corrected steering vector to improve the beamforming performance to compensate mismatch of plane wave assumption in free space that the normal beam-forming is based upon. The effectiveness of the proposed approach is evaluated by numerical simulations.
机译:学术界和工业界已经广泛研究了球形麦克风阵列在多媒体应用中的应用。这种研究的一般假设是基于在自由空间模型中传播的平面波。但是,在实际应用中,局限性环境(例如房间或附近携带阵列的家具)边界的声波反射可能会严重降低阵列的性能。在本文中,我们提出了一种使用圆形麦克风阵列的波束成形和到达方向(DOA)估计方法,该圆形麦克风阵列安装在靠近底部边界的球体赤道上,其中底部反射比其他反射占主导地位,这对应于诸如球形麦克风阵列设置在桌子或地板上。我们研究了混响对波束形成性能的影响,并提出了一种改善麦克风阵列性能的算法。我们首先介绍一种声波球形散射模型,以提供理论背景。边界反射模型随后基于两路径射线理论而开发。我们进一步提出一种使用校正后的转向矢量来改善波束成形性能的方法,以补偿正常波束成形所基于的自由空间中的平面波假设的失配。通过数值模拟评估了该方法的有效性。

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