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Improved Noise Power Spectrum Density Estimation for Binaural Hearing Aids Operating in a Diffuse Noise Field Environment

机译:弥散噪声场环境中运行的双耳助听器的改进噪声功率谱密度估计

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The current generation of digital hearing aids allows the implementation of advanced noise reduction schemes. However, most current noise reduction algorithms are monaural and are therefore intended for only bilateral hearing aids. Recently, binaural in contrast to monaural noise reduction schemes have been proposed, targeting future high-end binaural hearing aids. Those new types of hearing aids would allow the sharing of information/signals received from both left and right hearing aid microphones (via a wireless link) to generate an output for the left and right ear. This paper presents a novel noise power spectral density estimator for binaural hearing aids operating in a diffuse noise field environment, by taking advantage of the left and right reference signals that will be accessible, as opposed to the single reference signal currently available in bilateral hearing aids. In contrast with some previously published noise estimation methods for hearing aids or speech enhancement, the proposed noise estimator does not assume stationary noise, it can work for colored noise in a diffuse noise field, it does not require a voice activity detection, the noise power spectrum can be estimated during speech activity or not, it does not experience noise tracking latency and most importantly, it is not essential for the target speaker to be in front of the binaural hearing aid user to estimate the noise power spectrum, i.e., the direction of arrival of the source speech signal can be arbitrary. Finally, the proposed noise estimator can be combined with any hearing aid noise reduction technique, where the accuracy of the noise estimation can be critical to achieve a satisfactory de-noising performance.
机译:当前一代的数字助听器允许实施高级降噪方案。但是,当前大多数降噪算法都是单声道的,因此仅用于双边助听器。近来,已经提出了与单耳降噪方案相反的双耳,其针对未来的高端双耳助听器。这些新型助听器将允许共享从左和右助听器麦克风接收到的信息/信号(通过无线链接),从而为左耳和右耳生成输出。本文介绍了一种新颖的噪声功率谱密度估计器,用于在弥散噪声场环境中工作的双耳助听器,该方法利用了可访问的左右参考信号,而不是目前在双边助听器中可用的单个参考信号。 。与以前发布的一些用于助听器或语音增强的噪声估计方法相比,建议的噪声估计器不假定平稳噪声,它可以用于弥散噪声场中的有色噪声,不需要语音活动检测,即噪声功率频谱可以在语音活动期间进行估计,也可以不在语音活动期间进行估计,最重要的是,目标说话者不在双耳助听器用户之前来估计噪声功率频谱(即方向)不是必需的源语音信号的到达时间可以是任意的。最后,建议的噪声估计器可以与任何助听器降噪技术结合使用,其中噪声估计的精度对于实现令人满意的降噪性能至关重要。

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