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首页> 外文期刊>Audio, Speech, and Language Processing, IEEE/ACM Transactions on >Perceptually Relevant Preservation of Interaural Time Differences in Binaural Hearing Aids
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Perceptually Relevant Preservation of Interaural Time Differences in Binaural Hearing Aids

机译:双耳助听器中听觉时间差的感知相关保存

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摘要

This paper presents a noise reduction method with perceptually relevant preservation of the interaural time difference (ITD) of the residual noise in binaural hearing aids. The interaural coherence (IC) concept, previously applied to the multichannel Wiener filter (MWF) for preservation of the spatial subjective sensation of diffuse noise fields, is proposed here to both preserve and emphasize the ITD binaural cues of a directional acoustic noise source. It is demonstrated that the previously developed MWF-ITD technique may decrease the original IC magnitude of the processed noise, consequently increasing the variance of the interaural phase difference (IPD) of the output signals. It is shown that the MWF-IC technique simultaneously minimizes a nonlinear function of the difference between input and output IPD, which is strictly related to ITD, and preserves the natural coherence of directional noise captured by the reference microphones. Objective measures and psychoacoustic experiments corroborate the theoretical findings, showing that the MWF-IC technique provides relevant noise reduction, while preserving the original ITD subjective perception and original lateralization for a directional noise source. These results are especially relevant for hearing aid designers, since they indicate MWF-IC as a noise reduction technique that provides residual noise spatial preservation for both diffuse and directional noise sources in frequencies below 1.5 kHz.
机译:本文提出了一种降噪方法,在感知上相关地保留了双耳助听器中残留噪声的耳间时间差(ITD)。这里提出了耳间相干性(IC)概念,该概念先前应用于多通道维纳滤波器(MWF),用于保留散射噪声场的空间主观感觉,旨在同时保留和强调定向声噪声源的ITD双耳线索。可以证明,先前开发的MWF-ITD技术可能会降低处理后的噪声的原始IC幅度,从而增加输出信号的耳间相位差(IPD)的方差。结果表明,MWF-IC技术同时最小化了与IPD严格相关的输入和输出IPD之间差异的非线性函数,并保留了参考麦克风捕获的定向噪声的自然相干性。客观测量和心理声学实验证实了理论发现,表明MWF-IC技术可提供相关的降噪效果,同时保留了定向噪声源的原始ITD主观感知和原始偏侧化。这些结果对于助听器设计人员尤其重要,因为它们表明MWF-IC是一种降噪技术,可为频率低于1.5 kHz的散射和定向噪声源提供残余噪声空间保留。

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