用于双耳助听器的梳状滤波器的FPGA实现,用于减少语音内频谱掩蔽

S. G. Kambalimath, P. C. Pandey, P. N. Kulkarni, S. Mahant-Shetti, Sangmesh G. Hiremath
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引用次数: 5

摘要

感音神经性听力障碍与由于语音频谱掩蔽增加而导致的语音感知下降有关。对于中度双侧感觉神经丧失的患者,使用一对互补梳状滤波器的双耳二分呈现可以减少增加的语音频谱掩蔽的影响,从而改善语音感知。先前已有研究表明,使用基于听觉临界带宽的梳状滤波器,其幅度响应设计用于响度和线性相位响应的感知平衡,可以显著改善语音感知,而不会对宽带声源的定位产生不利影响。基于fpga的513系数滤波器的实现,采样频率为10 kHz,用于双耳助听器。使用16位编解码器和15位整数滤波器系数的实现分别使用47%,34%和53%的组合功能,逻辑寄存器和逻辑元件,可在Altera Cyclone II EP2C70F896C6 FPGA上获得。得到的幅度响应与脱机浮点实现非常接近。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FPGA based implementation of comb filters for use in binaural hearing aids for reducing intraspeech spectral masking
Sensorineural hearing impairment is associated with decreased speech perception due to increased intraspeech spectral masking. For persons with moderate bilateral sensorineural loss, binaural dichotic presentation using a pair of complementary comb filters can reduce the effects of increased intraspeech spectral masking and thereby improve speech perception. It has been earlier shown that use of comb filters based on auditory critical bandwidths, with magnitude responses designed for perceptual balance of loudness and linear phase responses, resulted in a significant improvement in speech perception without adversely affecting localization of broadband sound sources. An FPGA-based implementation of these 513-coefficient filters with sampling frequency of 10 kHz is carried out for use in binaural hearing aids. Implementation using a 16bit codec and 15-bit integer filter coefficients used 47%, 34%, and 53% of combinational functions, logic registers, and logic elements, respectively, available on “Altera Cyclone II EP2C70F896C6” FPGA. The resulting magnitude responses have a close match to the offline floating-point implementation.
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