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Combined Feedback and Noise Suppression in Hearing Aids

机译:助听器中的组合反馈和噪声抑制

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In this paper, solutions for combined feedback and noise suppression in hearing aids are developed. The techniques presented are based on the generalized sidelobe canceller (GSC) and adaptive feedback canceller (AFC), with a prediction error method (PEM) adaptation to avoid speech distortion. Two possible cascades of GSC-based noise reduction and AFC, namely an “AFC first” and a “GSC first,” as well as a truly integrated solution that jointly suppresses feedback and noise are discussed. The integrated solution (called PEM-GFIC) achieves optimum synergies between noise and feedback suppression at the lowest computational cost. In addition, it cancels more feedback than the generalized echo and interference canceller, a joint solution for echo and noise suppression. In the cascaded solutions, the feedback and noise suppression filters are not always optimally exploited. For high input SNRs, “AFC first” scheme generally may achieve better feedback cancellation because of its larger number of degrees of freedom. However, noise reduction by the GSC-stage seriously affects the feedback cancellation performance. At low SNRs, “GSC first” generally achieves more feedback cancellation than PEM-GFIC at the expense of worse noise reduction. At high hearing aid gains and/or large SNRs, the noise reduction stage however negatively affects the performance of the feedback cancellation filter, resulting in a worse feedback and noise suppression compared to PEM-GFIC.
机译:在本文中,开发了用于助听器的组合反馈和噪声抑制的解决方案。提出的技术基于广义旁瓣消除器(GSC)和自适应反馈消除器(AFC),并采用预测误差方法(PEM)自适应以避免语音失真。讨论了基于GSC的降噪和AFC的两个可能的级联,即“ AFC优先”和“ GSC优先”,以及联合抑制反馈和噪声的真正集成解决方案。集成解决方案(称为PEM-GFIC)以最低的计算成本实现了噪声与反馈抑制之间的最佳协同作用。此外,它比通用的回声和干扰消除器消除了更多的反馈,后者是回声和噪声抑制的联合解决方案。在级联解决方案中,反馈和噪声抑制滤波器并不总是得到最佳利用。对于高输入SNR,“ AFC优先”方案由于其较大的自由度,通常可以实现更好的反馈消除。但是,GSC级降噪会严重影响反馈消除性能。在低SNR情况下,“ GSC优先”通常比PEM-GFIC获得更多的反馈消除,但会带来更差的降噪效果。但是,在高助听器增益和/或大SNR的情况下,降噪阶段会对反馈消除滤波器的性能产生负面影响,与PEM-GFIC相比,导致反馈和噪声抑制效果更差。

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