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首页> 外文期刊>Computers in Biology and Medicine >Online approximation of the multichannel Wiener filter with preservation of interaural level difference for binaural hearing-aids
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Online approximation of the multichannel Wiener filter with preservation of interaural level difference for binaural hearing-aids

机译:多通道维纳滤波器的在线逼近,保存双耳助剂的互连差异

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摘要

This work presents an online approximation method for the multichannel Wiener filter (MWF) noise reduction technique with preservation of the noise interaural level difference (ILD) for binaural hearing-aids. The steepest descent method is applied to a previously proposed MWF-ILD cost function to both approximate the optimal linear estimator of the desired speech and keep the subjective perception of the original acoustic scenario. The computational cost of the resulting algorithm is estimated in terms of multiply and accumulate operations, whose number can be controlled by setting the number of iterations at each time frame. Simulation results for the particular case of one speech and one-directional noise source show that the proposed method increases the signal-to-noise ratio SNR of the originally acquired speech by up to 16.9 dB in the assessed scenarios. As compared to the online Implementation of the conventional MWF technique, the proposed technique provides a reduction of up to 7 dB in the noise ILD error at the price of a reduction of up 3 dB in the output SNR. Subjective experiments with volunteers complement these objective measures with psychoacoustic results, which corroborate the expected spatial preservation of the original acoustic scenario. The proposed method allows practical online implementation of the MWF-ILD noise reduction technique under constrained computational resources. Predicted SNR improvements from 12 dB to 16.9 dB can be obtained in application-specific integrated circuits for hearing aids and state-of-the-art digital signal processors.
机译:该工作提出了一种用于多通道维纳滤波器(MWF)降噪技术的在线近似方法,其保存了用于双耳听力的噪声互连差(ILD)。将最陡的血液抑制方法应用于先前提出的MWF-ILD成本函数,以近似所需语音的最佳线性估计,并保持对原始声学场景的主观感知。在乘法和累积操作方面估计了所得算法的计算成本,其可以通过在每个时间帧中设置迭代的数量来控制其数量。对一个语音和单向噪声源的特定情况的模拟结果表明,所提出的方法在评估的场景中增加最初获取的语音的信噪比SNR最多可获取的语音。与传统MWF技术的在线实现相比,所提出的技术在噪声ILD误差下提供高达7dB的降低,以在输出SNR中的降低3 dB的价格下误差。志愿者的主观实验与心理声学结果补充了这些客观措施,这些措施使原始声学情景的预期空间保存有所了解。该方法允许在约束计算资源下实现MWF-ILD降噪技术的实际在线实现。在专用于助听器和最先进的数字信号处理器的应用专用集成电路中,可以获得从12 dB到16.9 dB的预测SNR改进。

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