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首页> 外文期刊>The Journal of the Acoustical Society of America >Interaural fluctuations and the detection of interaural incoherence. III. Narrowband experiments and binaural models
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Interaural fluctuations and the detection of interaural incoherence. III. Narrowband experiments and binaural models

机译:耳间波动和耳间不连贯的检测。三,窄带实验和双耳模型

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In the first two articles of this series, reproducible noises with a fixed value of interaural coherence (0.992) were used to study the human ability to detect interaural incoherence. It was found that incoherence detection is strongly correlated with fluctuations in interaural differences, especially for narrow noise bandwidths, but it remained unclear what function of the fluctuations best agrees with detection data. In the present article, ten different binaural models were tested against detection data for 14- and 108-Hz bandwidths. These models included different types of binaural processing: independent-interaural-phase-difference/interaural-level-difference, lateral-position, and short-term cross-correlation. Several preprocessing transformations of the interaural differences were incorporated: compression of binaural cues, temporal averaging, and envelope weighting. For the 14-Hz bandwidth data, the most successful model postulated that incoherence is detected via fluctuations of interaural phase and interaural level processed by independent centers. That model correlated with detectability at r=0.87. That model proved to be more successful than short-term cross-correlation models incorporating standard physiologically-based model features (r=0.78). For the 108-Hz bandwidth data, detection performance varied much less among different waveforms, and the data were less able to distinguish between models. (C) 2007 Acoustical Society of America.
机译:在本系列的前两篇文章中,使用具有固定的耳间连贯性值(0.992)的可再现噪声来研究人类检测耳间不连贯性的能力。发现不相干检测与耳间差异的波动密切相关,尤其是对于窄噪声带宽,但目前尚不清楚波动的什么功能与检测数据最一致。在本文中,针对14和108 Hz带宽的检测数据测试了十种不同的双耳模型。这些模型包括不同类型的双耳处理:独立的耳间相位差/耳间电平差,横向位置和短期互相关。合并了几种耳间差异的预处理转换:双耳提示信号的压缩,时间平均和包络加权。对于14 Hz带宽数据,最成功的模型假定通过独立中心处理的耳间相位和耳间电平波动来检测不连贯性。该模型与r = 0.87时的可检测性相关。该模型被证明比结合标准的基于生理模型的特征(r = 0.78)的短期互相关模型更为成功。对于108 Hz带宽数据,检测性能在不同波形之间的差异很小,并且数据在模型之间的区别也较小。 (C)2007美国声学学会。

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