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Perceptually Inspired Noise-Reduction Method for Binaural Hearing Aids

机译:双耳助听器的启发性降噪方法

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摘要

Different noise-reduction methods have been proposed in the literature for single and multiple-microphone applications. For binaural hearing aids, multiple-microphone noise-reduction methods offer two significant psycho-acoustical advantages with respect to the single-microphone methods. First, noise reduction strategies based on binaural processing (processing using the information received at the left and right ear) are more effective than using independent monaural processing because of the added information. Second, there is an user preference for noise reduction methods that preserve localization cues of both target and interfering signals. Although different multiple-microphone noise-reduction techniques have been proposed in the literature, only a small set is able to preserve the localization cues for both target and interfering signals. This paper proposes a binaural noise-reduction method that preserves the localization cues for both target and interfering signals. The proposed method is based on blind source separation (BSS) followed by a postprocessing technique inspired by a human auditory model. The performance of the proposed method is analyzed using objective and subjective measurements, and compared to existing binaural noise-reduction methods based on BSS and multichannel Wiener filter (MWF). Results show that for some scenarios and conditions, the proposed method outperforms on average the existing methods in terms of noise reduction and provides nearly similar sound quality.
机译:在文献中已经针对单麦克风和多麦克风应用提出了不同的降噪方法。对于双耳助听器,与单麦克风方法相比,多麦克风降噪方法具有两个明显的心理声学优势。首先,由于增加了信息,基于双耳处理(使用左右耳接收的信息进行处理)的降噪策略比使用独立的单耳处理更有效。其次,用户偏爱使用降噪方法来保留目标信号和干扰信号的定位提示。尽管在文献中已经提出了不同的多麦克风降噪技术,但是只有一小部分能够保留目标信号和干扰信号的定位提示。本文提出了一种双耳降噪方法,该方法保留了目标信号和干扰信号的定位提示。所提出的方法是基于盲源分离(BSS),然后是受人类听觉模型启发的后处理技术。该方法的性能通过客观和主观测量进行分析,并与现有的基于BSS和多通道维纳滤波器(MWF)的双耳降噪方法进行了比较。结果表明,在某些情况和条件下,所提出的方法在降噪方面平均优于现有方法,并提供几乎相似的声音质量。

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