An Adaptive Non-Linear Process for Under-Determined Virtual Microphone Beamforming

M. Bekrani, Anh H. T. Nguyen, Andy W. H. Khong
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引用次数: 1

Abstract

Virtual microphone beamforming techniques are attractive for devices limited by space constraints. These techniques synthesize virtual microphone signals via interpolation algorithms. We propose to extend existing virtual microphone signal interpolation by employing an adaptive non-linear (ANL) process for acoustic beamforming. The proposed ANL based interpolation utilizes a target-presence probability criteria to determine the degree of non-linearity. The beamformer output is then derived using a combination between interpolations during target inactive zones and target active zones. Such combination offers a trade-off between reducing interference and target signal distortion. We apply the proposed ANL-based interpolator to the maximum signal-to-noise ratio (MSNR) beamformer and compare its performance against conventional beamforming and virtual microphone based beamforming methods in under-determined situations.
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欠定虚拟麦克风波束形成的自适应非线性过程
虚拟麦克风波束形成技术对受空间限制的设备具有吸引力。这些技术通过插值算法合成虚拟麦克风信号。我们建议通过采用自适应非线性(ANL)过程进行声波束形成来扩展现有的虚拟麦克风信号插值。所提出的基于ANL的插值利用目标存在概率准则来确定非线性程度。然后,在目标非活动区域和目标活动区域之间使用插值组合来导出波束形成器输出。这种组合提供了减少干扰和目标信号失真之间的权衡。我们将基于anl的插值器应用于最大信噪比(MSNR)波束形成器,并在欠确定情况下将其与传统波束形成方法和基于虚拟麦克风的波束形成方法的性能进行比较。
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