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将语音基频编码为振动触觉频率。

Encoding voice fundamental frequency into vibrotactile frequency.

作者信息

Rothenberg M, Molitor R D

出版信息

J Acoust Soc Am. 1979 Oct;66(4):1029-38. doi: 10.1121/1.383322.

Abstract

Measured in this study was the ability of eight hearing and five deaf subjects to identify the stress pattern in a short sentence from the variation in voice fundamental frequency (F0), when presented aurally (for hearing subjects) and when transformed into vibrotactile pulse frequency. Various transformations from F0 to pulse frequency were tested in an attempt to determine an optimum transformation, the amount of F0 information that could be transmitted, and what the limitations in the tactile channel might be. The results indicated that a one- or two-octave reduction of F0 vibrotactile frequency (transmitting every second or third glottal pulse) might result in a significant ability to discriminate the intonation patterns associated with moderate-to-strong patterns of sentence stress in English. However, accurate reception of the details of the intonation pattern may require a slower than normal pronounciation because of an apparent temporal indeterminacy of about 200 ms in the perception of variations in vibrotactile frequency. A performance deficit noted for the two prelingually, profoundly deaf subjects with marginally discriminable encodings offers some support for our previous hypothesis that there is a natural association between auditory pitch and perceived vibrotactile frequency.

摘要

本研究测量了8名听力正常者和5名失聪者在通过听觉方式(针对听力正常者)以及将语音基频(F0)转换为振动触觉脉冲频率时,从短句中语音基频的变化来识别重音模式的能力。测试了从F0到脉冲频率的各种转换,以确定最佳转换方式、可传输的F0信息量以及触觉通道可能存在的局限性。结果表明,将F0振动触觉频率降低一个或两个八度(传输每隔一个或两个声门脉冲)可能会显著提高辨别与英语中适度到强烈句子重音模式相关的语调模式的能力。然而,由于在感知振动触觉频率变化时明显存在约200毫秒的时间不确定性,准确接收语调模式的细节可能需要比正常语速更慢的发音。两名语前聋、重度失聪且编码难以区分的受试者表现不佳,这为我们之前的假设提供了一些支持,即听觉音高与感知到的振动触觉频率之间存在自然关联。

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