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首页> 外文期刊>The Journal of the Acoustical Society of America >The effects of noise-bandwidth, noise-fringe duration, and temporal signal location on the binaural masking-level difference
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The effects of noise-bandwidth, noise-fringe duration, and temporal signal location on the binaural masking-level difference

机译:噪声带宽,噪声条纹持续时间和时间信号位置对双耳掩蔽电平差异的影响

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摘要

The effects of forward and backward noise fringes on binaural signal detectability were investigated. Masked thresholds for a 12-ms, 250-Hz, sinusoidal signal masked by Gaussian noise, centered at 250 Hz, with bandwidths from 3 to 201 Hz, were obtained in N _0S _0 and N _0S _π configurations. The signal was (a) temporally centered in a 12-ms noise burst (no fringe), (b) presented at the start of a 600-ms noise burst (backward fringe), or (c) temporally centered in a 600-ms noise burst (forward-plus-backward fringe). For noise bandwidths between 3 and 75 Hz, detection in N _0S _0 improved with the addition of a backward fringe, improving further with an additional forward fringe; there was little improvement in N _0S _π. The binaural masking-level difference (BMLD) increased from 0 to 8 dB with a forward-plus-backward fringe as noise bandwidths increased to 100 Hz, increasing slightly to 10 dB at 201 Hz. This two-stage increase was less pronounced with a backward fringe. With no fringe, the BMLD was about 10-14 dB at all bandwidths. Performance appears to result from the interaction of across-time and across-frequency listening strategies and the possible effects of gain reduction and suppression, which combine in complex ways. Current binaural models are, as yet, unable to account fully for these effects.
机译:研究了前向和后向噪声条纹对双耳信号可检测性的影响。在N _0S _0和N _0S_π配置中,获得了以250 Hz为中心,带宽为3至201 Hz的,被高斯噪声掩盖的12毫秒,250 Hz正弦信号的掩蔽阈值。信号的时间(a)在时间上集中在12毫秒的噪声突发中(无条纹),(b)在600毫秒的噪声突发开始时出现(向后边缘)或(c)在时间上以600毫秒为中心噪声突发(向前加向后边缘)。对于3到75 Hz之间的噪声带宽,在N _0S _0中的检测通过添加后向条纹来改善,并通过增加前向条纹来进一步提高; N _0S_π几乎没有改善。当噪声带宽增加到100 Hz时,双耳掩蔽电平差(BMLD)从0增加到8 dB,带有正向和反向条纹,在201 Hz时略微增加到10 dB。带有后向条纹的话,这两个阶段的增加并不明显。在没有边缘的情况下,所有带宽的BMLD约为10-14 dB。表现似乎是由于跨时间和跨频率的聆听策略之间的相互作用以及增益降低和抑制的可能影响而造成的,这些影响以复杂的方式结合在一起。迄今为止,当前的双耳模型还不能完全考虑这些影响。

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