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On Microphone-Array Beamforming From a MIMO Acoustic Signal Processing Perspective

机译:从MIMO声信号处理角度看麦克风阵列波束成形

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Although many microphone-array beamforming algorithms have been developed over the past few decades, most such algorithms so far can only offer limited performance in practical acoustic environments. The reason behind this has not been fully understood and further research on this matter is indispensable. In this paper, we treat a microphone array as a multiple-input multiple-output (MIMO) system and study its signal-enhancement performance. Our major contribution is fourfold. First, we develop a general framework for analyzing performance of beamforming algorithms based on the acoustic MIMO channel impulse responses. Second, we study the bounds for the length of the beamforming filter, which in turn shows the performance bounds of beamforming in terms of speech dereverberation and interference suppression. Third, we address the connection between beamforming and the multiple-input/output inverse theorem (MINT). Finally, we discuss the intrinsic relationships among different classical beamforming techniques and explain, from the channel condition perspective, what the prerequisites are for those techniques to work
机译:尽管在过去的几十年中已经开发了许多麦克风阵列波束成形算法,但是到目前为止,大多数此类算法只能在实际的声学环境中提供有限的性能。其背后的原因尚未完全理解,因此对此事进行进一步研究是必不可少的。在本文中,我们将麦克风阵列视为多输入多输出(MIMO)系统,并研究其信号增强性能。我们的主要贡献是四倍。首先,我们开发了一个通用框架,用于分析基于声学MIMO信道脉冲响应的波束成形算法的性能。其次,我们研究了波束成形滤波器长度的界限,这又从语音去混响和干扰抑制方面显示了波束成形的性能界限。第三,我们解决了波束成形与多输入/输出逆定理(MINT)之间的联系。最后,我们讨论了不同经典波束成形技术之间的内在联系,并从信道条件的角度解释了这些技术起作用的先决条件

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