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关于声门气流的测量

On the measurement of glottal flow.

作者信息

Cranen B, Boves L

机构信息

Institute of Phonetics, Nijmegen University, The Netherlands.

出版信息

J Acoust Soc Am. 1988 Sep;84(3):888-90. doi: 10.1121/1.396658.

DOI:10.1121/1.396658
PMID:3183207
Abstract

For developing a comprehensive description of voiced speech sounds in terms of a phonation and an articulation component, it is necessary to know to what extent the volume flow modulations at the entrance of the vocal tract are due to vocal fold motions and to what extent they are due to variations in the transglottal pressure. In order to be able to study this problem, it is important that the flow at the glottis can be measured during normal speech production in a reliable fashion. In this article, a flow measurement technique is described that differs from the more usual inverse filtering approach to the extent that the flow is not measured at the mouth, but much closer to the glottis. The technique is based on the measurement of pressure gradient. It is shown that the proposed method also leads to an inverse filtering problem, but that, since this problem is much simpler, the gradient method yields more reliable estimates of the shape of the glottal flow waveform, though without the zero flow level (dc component) and without a magnitude scale. By means of theoretical considerations about velocity profiles in pulsatile flow in cylindrical tubes, it is shown that the method for measuring flow during phonation proposed in this article may be expected to yield reasonable flow waveform estimates in a frequency region from any normal fundamental frequency to an upper frequency determined by the transducer sensitivity and separation and vocal tract geometry. In this case, the frequency limitation was estimated to be 1000 Hz.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

为了从发声和发音成分方面全面描述有声语音,有必要了解声道入口处的体积流量调制在多大程度上归因于声带运动,以及在多大程度上归因于声门跨压的变化。为了能够研究这个问题,重要的是在正常语音产生过程中能够以可靠的方式测量声门处的流量。在本文中,描述了一种流量测量技术,它与更常用的逆滤波方法的不同之处在于,流量不是在口腔处测量,而是在更靠近声门的位置测量。该技术基于压力梯度的测量。结果表明,所提出的方法也会导致一个逆滤波问题,但由于这个问题要简单得多,梯度法能给出更可靠的声门流量波形形状估计,不过没有零流量水平(直流分量)且没有幅度标度。通过对圆柱形管中脉动流速度分布的理论考虑,表明本文提出的发声期间流量测量方法有望在从任何正常基频到由换能器灵敏度、间距和声道几何形状确定的上限频率的频率区域内给出合理的流量波形估计。在这种情况下,频率限制估计为1000赫兹。(摘要截断于250字)

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