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A Wiener Filter Approach to Microphone Leakage Reduction in Close-Microphone Applications

机译:一种用于减少近麦克风应用中的麦克风泄漏的维纳滤波器方法

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摘要

Microphone leakage is one of the most prevalent problems in audio applications involving multiple instruments and multiple microphones. Currently, sound engineers have limited solutions available to them. In this paper, the applicability of two widely used signal enhancement methods to this problem is discussed, namely blind source separation and noise suppression. By extending previous work, it is shown that the noise suppression framework is a valid choice and can effectively address the problem of microphone leakage. Here, an extended form of the single channel Wiener filter is used which takes into account the individual audio sources to derive a multichannel noise term. A novel power spectral density (PSD) estimation method is also proposed based on the identification of dominant frequency bins by examining the microphone and output signal PSDs. The performance of the method is examined for simulated environments with various source–microphone setups and it is shown that the proposed approach efficiently suppresses leakage.
机译:麦克风泄漏是涉及多个乐器和多个麦克风的音频应用中最普遍的问题之一。当前,声音工程师只能使用有限的解决方案。本文讨论了两种广泛使用的信号增强方法在此问题上的适用性,即盲源分离和噪声抑制。通过扩展先前的工作,可以证明噪声抑制框架是一个有效的选择,可以有效地解决麦克风泄漏的问题。在此,使用了单声道维纳滤波器的扩展形式,该形式考虑了各个音频源来得出多声道噪声项。基于对主频箱的识别,通过检查麦克风和输出信号PSD,提出了一种新颖的功率谱密度(PSD)估计方法。在具有各种源麦克风设置的模拟环境中检查了该方法的性能,结果表明所提出的方法有效地抑制了泄漏。

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