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带宽对噪声掩蔽下听觉定位的影响。

Effects of bandwidth on auditory localization with a noise masker.

机构信息

Air Force Research Laboratory, 2610 Seventh Street, WPAFB, Ohio 45433, USA.

出版信息

J Acoust Soc Am. 2009 Dec;126(6):3199-208. doi: 10.1121/1.3243309.

Abstract

Although high-frequency content is known to be critically important for the accurate location of isolated sounds, relatively little is known about the importance of high-frequency spectral content for the localization of sounds in the presence of a masker. In this experiment, listeners were asked to identify the location of a pulsed-noise target in the presence of a randomly located continuous noise masker. Both the target and masker were low-pass filtered at one of eight cutoff frequencies ranging from 1 to 16 kHz, and the signal-to-noise ratio was varied from -12 to +12 dB. The results confirm the importance of high frequencies for the localization of isolated sounds, and show that high-frequency content remains critical in cases where the target sound is masked by a spatially separated masker. In fact, when two sources of the same level are randomly located in space, these results show that a decrease in stimulus bandwidth from 16 to 12 kHz might result in a 30% increase in overall localization error.

摘要

虽然高频内容对于准确确定孤立声音的位置至关重要,但对于高频谱内容在存在掩蔽器的情况下确定声音位置的重要性,人们知之甚少。在这个实验中,要求听众在随机定位的连续噪声掩蔽器存在的情况下识别脉冲噪声目标的位置。目标和掩蔽器都在八个截止频率之一处进行低通滤波,频率范围从 1 到 16 kHz,信噪比从-12 到+12 dB 变化。结果证实了高频对于孤立声音定位的重要性,并且表明在目标声音被空间分离的掩蔽器掩蔽的情况下,高频内容仍然至关重要。事实上,当两个相同水平的声源随机定位在空间中时,这些结果表明,刺激带宽从 16 kHz 降低到 12 kHz 可能会导致整体定位误差增加 30%。

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