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首页> 外文期刊>The Journal of the Acoustical Society of America >Evaluation of a method for enhancing interaural level differences at low frequencies
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Evaluation of a method for enhancing interaural level differences at low frequencies

机译:评价较低频率下颞下水平差异的方法

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摘要

A method (called binaural enhancement) for enhancing interaural level differences at low frequencies, based on estimates of interaural time differences, was developed and evaluated. Five conditions were compared, all using simulated hearing-aid processing: (1) Linear amplification with frequency-response shaping; (2) binaural enhancement combined with linear amplification and frequency-response shaping; (3) slow-acting four-channel amplitude compression with independent compression at the two ears (AGC4CH); (4) binaural enhancement combined with four-channel compression (BE-AGC4CH); and (5) four-channel compression but with the compression gains synchronized across ears. Ten hearing-impaired listeners were tested, and gains and compression ratios for each listener were set to match targets prescribed by the CAM2 fitting method. Stimuli were presented via headphones, using virtualization methods to simulate listening in a moderately reverberant room. The intelligibility of speech at ±60° azimuth in the presence of competing speech on the opposite side of the head at ±60° azimuth was not affected by the binaural enhancement processing. Sound localization was significantly better for condition BE-AGC4CH than for condition AGC4CH for a sentence, but not for broadband noise, lowpass noise, or lowpass amplitude-modulated noise. The results suggest that the binaural enhancement processing can improve localization for sounds with distinct envelope fluctuations.
机译:开发和评估用于增强低频处的间隔水平差异的方法(称为双耳增强)。比较五种条件,所有条件都使用模拟的助剂处理:(1)用频率响应整形线性放大; (2)双耳增强结合线性放大和频率反应成型; (3)缓慢作用的四通道幅度压缩,两个耳朵的独立压缩(AGC4CH); (4)双耳增强结合四通道压缩(BE-AGC4CH); (5)四通道压缩,但压缩增益横跨耳朵同步。测试了十个听力障碍的听众,并设定每个收听者的增益和压缩比以匹配由CAM2配件方法规定的目标。刺激通过耳机呈现,使用虚拟化方法模拟在中等混响室内听力。在±60°方位角的头部相对侧的竞争语音存在下,±60°方位角的言语的可懂度不受双耳增强处理的影响。对于条件为-AG4CH而言,声音定位明显优于句子的条件AGC4CH,但不适用于宽带噪声,低通噪声或低通幅度调制噪声。结果表明,双耳增强处理可以改善具有不同包络波动的声音的定位。

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