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A Decision-Directed Adaptive Gain Equalizer for Assistive Hearing Instruments

机译:助听器的决策导向自适应增益均衡器

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Assistive hearing instruments have a significant impact on speech enhancement when the signal-to-noise ratio is low. These instruments are usually developed using the conventional adaptive gain equalizer (AGE), which has low computational complexity and low distortion in real-time speech enhancement. The conventional AGEs are intended to boost the speech segments of speech signals but they are incapable of suppressing noise segments. The overall speech quality of the assistive hearing instruments may be reduced, as the noise segments still cannot be filtered out. In this paper, a decision-directed AGE is proposed for assistive hearing instruments. It aims to overcome the limitation of the conventional AGE, which is capable only of boosting speech segments in noisy speech but incapable of suppressing noise segments. The proposed approach simultaneously boosts the speech segments and suppresses noise segments in noisy speech. Experimental results with different types of real-world noise indicate that the proposed method achieves better speech quality than does the conventional AGE. The resulting method provides an improved functionality for assistive hearing instruments.
机译:当信噪比较低时,助听器会对语音增强产生重大影响。这些仪器通常使用常规的自适应增益均衡器(AGE)开发,该算法具有较低的计算复杂度和实时语音增强中的低失真。传统的AGE旨在增强语音信号的语音片段,但是它们不能抑制噪声片段。辅助听力仪器的总体语音质量可能会降低,因为仍然无法滤除噪声片段。本文提出了一种针对辅助助听器的基于决策的AGE。目的在于克服传统AGE的局限性,该传统AGE只能增强嘈杂语音中的语音片段,而不能抑制噪声片段。所提出的方法同时增强了语音段并抑制了嘈杂语音中的噪声段。不同类型的现实世界噪声的实验结果表明,与传统AGE相比,该方法可实现更好的语音质量。所得方法为辅助助听器提供了改进的功能。

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