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首页> 外文期刊>Circuits, systems, and signal processing >Pitch-Based Voice Activity Detection for Feedback Cancellation and Noise Reduction in Hearing Aids
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Pitch-Based Voice Activity Detection for Feedback Cancellation and Noise Reduction in Hearing Aids

机译:基于音高的语音活动检测,用于助听器中的反馈消除和降噪

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摘要

In hearing aid (HA) systems, amplification of speech signals is done to compensate the hearing loss of patients. Background noise and feedback signals may also get amplified which degrade the intelligibility and quality of speech. To achieve high de-noise efficiency, signal processing unit in HA system has voice activity detector (VAD). The conventional VAD detects voice based on zero crossing rate or energy of input signals. However, these methods cannot perform well at low SNR or non-stationary noise environments. Since pitch is a special characteristic of speech and is basically independent of noise intensity, VAD based on pitch can have high accuracy even when the noise spectrum is changing drastically. In this paper, pitch-based VAD is presented and its accuracy is checked against zero crossing rate-based VAD (ZCR-VAD). For noise reduction, an improved multi-band spectral over-subtraction algorithm is employed along with the high accurate pitch-based VAD. For feedback cancellation, the performance of adaptive algorithms like NLMS, RLS and affine projection (AP) algorithms with pitch-based VAD is compared and it is observed that AP is suitable for feedback cancellation. The proposed noise reduction and feedback cancellation algorithm with pitch-based VAD method is tested with NOIZEUS speech database and with real-time noisy speech signals. The simulation results show that the accuracy of pitch-VAD is about 23% higher than that of ZCR-VAD. The SNR for the proposed noise reduction and feedback cancellation with pitch-VAD method is improved by 10 dB than conventional spectral subtraction and adaptive algorithms. Mean opinion score (MOS) obtained for the proposed method is 4.3 out of 5.
机译:在助听器(HA)系统中,语音信号被放大以补偿患者的听力损失。背景噪声和反馈信号也可能被放大,这会降低语音的清晰度和质量。为了实现较高的降噪效率,HA系统中的信号处理单元具有语音活动检测器(VAD)。传统的VAD基于零交叉速率或输入信号的能量来检测语音。但是,这些方法在低SNR或非平稳噪声环境下无法很好地执行。由于音调是语音的特殊特征,并且基本上与噪声强度无关,因此即使在噪声频谱急剧变化的情况下,基于音调的VAD也可以具有较高的精度。在本文中,提出了基于音高的VAD,并针对基于零交叉速率的VAD(ZCR-VAD)检验了其准确性。为了降低噪声,采用了一种改进的多频带频谱超减算法以及基于音高的高精度VAD。对于反馈消除,比较了自适应算法(如NLMS,RLS和基于基音的VAD的仿射投影(AP)算法)的性能,并观察到AP适用于反馈消除。通过NOIZEUS语音数据库和实时噪声语音信号对基于音高的VAD方法的降噪和反馈抵消算法进行了测试。仿真结果表明,Pitch-VAD的精度比ZCR-VAD的精度高约23%。与传统的频谱减法和自适应算法相比,采用音高-VAD方法进行拟议的降噪和反馈消除的信噪比提高了10 dB。该方法获得的平均意见分数(MOS)为4.3,满分为5。

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