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A non-intrusive method for estimating binaural speech intelligibility from noise-corrupted signals captured by a pair of microphones

机译:一种非侵入性方法,用于从一对麦克风捕获的受噪声破坏的信号中估计双耳语音的清晰度

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摘要

A non-intrusive method is introduced to predict binaural speech intelligibility in noise directly from signals captured using a pair of microphones. The approach combines signal processing techniques in blind source separation and localisation, with an intrusive objective intelligibility measure (OIM). Therefore, unlike classic intrusive OIMs, this method does not require a clean reference speech signal and knowing the location of the sources to operate. The proposed approach is able to estimate intelligibility in stationary and fluctuating noises, when the noise masker is presented as a point or diffused source, and is spatially separated from the target speech source on a horizontal plane. The performance of the proposed method was evaluated in two rooms. When predicting subjective intelligibility measured as word recognition rate, this method showed reasonable predictive accuracy with correlation coefficients above 0.82, which is comparable to that of a reference intrusive OIM in most of the conditions. The proposed approach offers a solution for fast binaural intelligibility prediction, and therefore has practical potential to be deployed in situations where on-site speech intelligibility is a concern.
机译:引入了一种非侵入性方法来直接从使用一对麦克风捕获的信号中预测噪声中的双耳语音清晰度。该方法将盲源分离和定位中的信号处理技术与侵入式客观清晰度测量(OIM)相结合。因此,与传统的侵入式OIM不同,此方法不需要干净的参考语音信号,也不需要知道操作源的位置。当将噪声掩蔽器表示为点或扩散源,并且在水平面上与目标语音源在空间上分离时,所提出的方法能够估计平稳噪声和波动噪声中的清晰度。在两个房间中评估了所提出方法的性能。当预测以单词识别率衡量的主观清晰度时,该方法显示出合理的预测准确性,相关系数高于0.82,在大多数情况下与参考侵入式OIM相当。所提出的方法提供了一种快速的双耳清晰度预测的解决方案,因此具有在现场语音清晰度令人担忧的情况下部署的实际潜力。

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