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空间分离对语音信息掩蔽和能量掩蔽的影响。

The effect of spatial separation on informational and energetic masking of speech.

作者信息

Arbogast Tanya L, Mason Christine R, Kidd Gerald

机构信息

Department of Communication Disorders and The Hearing Research Center, Boston University, Massachusetts 02215, USA.

出版信息

J Acoust Soc Am. 2002 Nov;112(5 Pt 1):2086-98. doi: 10.1121/1.1510141.

Abstract

The effect of spatial separation of sources on the masking of a speech signal was investigated for three types of maskers, ranging from energetic to informational. Normal-hearing listeners performed a closed-set speech identification task in the presence of a masker at various signal-to-noise ratios. Stimuli were presented in a quiet sound field. The signal was played from 0 degrees azimuth and a masker was played either from the same location or from 90 degrees to the right. Signals and maskers were derived from sentences that were preprocessed by a modified cochlear-implant simulation program that filtered each sentence into 15 frequency bands, extracted the envelopes from each band, and used these envelopes to modulate pure tones at the center frequencies of the bands. In each trial, the signal was generated by summing together eight randomly selected frequency bands from the preprocessed signal sentence. Three maskers were derived from the preprocessed masker sentences: (1) different-band sentence, which was generated by summing together six randomly selected frequency bands out of the seven bands not present in the signal (resulting in primarily informational masking); (2) different-band noise, which was generated by convolving the different-band sentence with Gaussian noise; and (3) same-band noise, which was generated by summing the same eight bands from the preprocessed masker sentence that were used in the signal sentence and convolving the result with Gaussian noise (resulting in primarily energetic masking). Results revealed that in the different-band sentence masker, the effect of spatial separation averaged 18 dB (at 51% correct), while in the different-band and same-band noise maskers the effect was less than 10 dB. These results suggest that, in these conditions, the advantage due to spatial separation of sources is greater for informational masking than for energetic masking.

摘要

针对三种类型的掩蔽声,从能量型到信息型,研究了声源空间分离对语音信号掩蔽的影响。听力正常的听众在不同信噪比的掩蔽声存在的情况下执行封闭集语音识别任务。刺激声在安静的声场中呈现。信号从0度方位角播放,掩蔽声要么从同一位置播放,要么从右侧90度播放。信号和掩蔽声均来自经过修改的人工耳蜗模拟程序预处理的句子,该程序将每个句子过滤成15个频段,提取每个频段的包络,并使用这些包络来调制频段中心频率处的纯音。在每次试验中,信号是通过将预处理信号句子中随机选择的八个频段相加生成的。三种掩蔽声来自预处理的掩蔽声句子:(1)不同频段句子,由信号中不存在的七个频段中随机选择的六个频段相加生成(主要导致信息掩蔽);(2)不同频段噪声,通过将不同频段句子与高斯噪声卷积生成;(3)同频段噪声,由预处理掩蔽声句子中与信号句子中使用的相同的八个频段相加,并将结果与高斯噪声卷积生成(主要导致能量掩蔽)。结果显示,在不同频段句子掩蔽声中,空间分离的效果平均为18 dB(正确率为51%时),而在不同频段和同频段噪声掩蔽声中,效果小于10 dB。这些结果表明,在这些条件下,声源空间分离带来的优势在信息掩蔽中比在能量掩蔽中更大。

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