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RTF-Based Binaural MVDR Beamformer Exploiting an External Microphone in a Diffuse Noise Field

机译:基于RTF的双耳MVDR波束形成器利用漫射噪声场中的外部麦克风

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Besides suppressing all undesired sound sources, an important objective of a binaural noise reduction algorithm for hearing devices is the preservation of the binaural cues, aiming at preserving the spatial perception of the acoustic scene. A well-known binaural noise reduction algorithm is the binaural minimum variance distortionless response beamformer, which can be steered using the relative transfer function (RTF) vector of the desired source, relating the acoustic transfer functions between the desired source and all microphones to a reference microphone. In this paper, we propose a computationally efficient method to estimate theRTF vector in a diffuse noise field, requiring an additional microphone that is spatially separated from the head-mounted microphones. Assuming that the spatial coherence between the noise components in the head-mounted microphone signals and the additional microphone signal is zero, we show that an unbiased estimate of the RTF vector can be obtained. Based on real-world recordings, experimental results for several reverberation times show that the proposed RTF estimator outperforms the widely usedRTF estimator based on covariance whitening and a simple biased RTF estimator in terms of noise reduction and binaural cue preservation performance.
机译:除了抑制所有不期望的声源外,听力设备的双耳降噪算法的重要目标是保存双耳提示,旨在保留声学场景的空间感知。众所周知的双耳降噪算法是双耳最小方差失真响应波束形成器,其可以使用所需源的相对传递函数(RTF)向量来转向,将所需源和所有麦克风之间的声学​​传递函数相关联到参考麦克风。在本文中,我们提出了一种计算上有效的方法来估算漫射噪声场中的Zttf向量,需要额外的麦克风,该麦克风在空间上与头戴式麦克风分离。假设头戴式麦克风信号中的噪声分量与附加麦克风信号之间的空间相干性为零,我们表明可以获得RTF向量的不偏不倚估计。基于真实世界的录音,几个混响时间的实验结果表明,所提出的RTF估计器的基于基于协方差美白和简单偏置的RTF估计在降噪和双耳尺寸保护性能方面优于广泛使用的抗升高估计。

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