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频谱线索对人类声音定位的作用。

Contribution of spectral cues to human sound localization.

作者信息

Langendijk Erno H A, Bronkhorst Adelbert W

机构信息

TNO Human Factors Research Institute, Soesterberg, The Netherlands.

出版信息

J Acoust Soc Am. 2002 Oct;112(4):1583-96. doi: 10.1121/1.1501901.

Abstract

The contribution of spectral cues to human sound localization was investigated by removing cues in 1/2-, 1- or 2-octave bands in the frequency range above 4 kHz. Localization responses were given by placing an acoustic pointer at the same apparent position as a virtual target. The pointer was generated by filtering a 100-ms harmonic complex with equalized head-related transfer functions (HRTFs). Listeners controlled the pointer via a hand-held stick that rotated about a fixed point. In the baseline condition, the target, a 200-ms noise burst, was filtered with the same HRTFs as the pointer. In other conditions, the spectral information within a certain frequency band was removed by replacing the directional transfer function within this band with the average transfer of this band. Analysis of the data showed that removing cues in 1/2-octave bands did not affect localization, whereas for the 2-octave band correct localization was virtually impossible. The results obtained for the 1-octave bands indicate that up-down cues are located mainly in the 6-12-kHz band, and front-back cues in the 8-16-kHz band. The interindividual spread in response patterns suggests that different listeners use different localization cues. The response patterns in the median plane can be predicted using a model based on spectral comparison of directional transfer functions for target and response directions.

摘要

通过去除4kHz以上频率范围内1/2倍频程、1倍频程或2倍频程频段中的线索,研究了频谱线索对人类声音定位的贡献。通过将声学指针放置在与虚拟目标相同的视在位置来给出定位响应。该指针是通过用均衡的头部相关传递函数(HRTF)对100毫秒的谐波复合体进行滤波而生成的。听众通过围绕固定点旋转的手持杆来控制指针。在基线条件下,目标(一个200毫秒的噪声突发)用与指针相同的HRTF进行滤波。在其他条件下,通过用该频段的平均传递函数替换该频段内的方向传递函数,去除特定频段内的频谱信息。数据分析表明,去除1/2倍频程频段中的线索不会影响定位,而对于2倍频程频段,几乎不可能进行正确定位。1倍频程频段的结果表明,上下线索主要位于6-12kHz频段,前后线索位于8-16kHz频段。个体间响应模式的差异表明不同的听众使用不同的定位线索。中平面的响应模式可以使用基于目标和响应方向的方向传递函数频谱比较的模型来预测。

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