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通过利用声道系统特征的变化来确定声门开放区域。

Determination of glottal open regions by exploiting changes in the vocal tract system characteristics.

作者信息

Prasad Ravi Shankar, Yegnanarayana B

机构信息

International Institute of Information Technology, Hyderabad, India.

EEE Department, BITS-Pilani Hyderabad Campus, Jawaharnagar, Hyderabad 500078, India.

出版信息

J Acoust Soc Am. 2016 Jul;140(1):666. doi: 10.1121/1.4958681.

Abstract

This paper presents an approach to determine the open phase region of a glottal cycle based on changes in the characteristics of the vocal tract system. The glottal closing phase contributes to major excitation of the vocal tract system. The opening phase affects the vocal tract system characteristics by effectively increasing the length of the tract, due to coupling of the subglottal region. To determine the glottal open region, it is necessary to estimate the vocal tract characteristics from the segment with subglottal coupling. The proposed method derives the dominant resonance frequency (DRF) of the vocal tract system at every sampling instant, using a heavily decaying window (HDW) for analysis. The DRF contour transits to lower frequencies during glottal open region, when compared to the glottal closed region. The open region, within the glottal cycles from voiced speech segment, is extracted using the HDW method. The results are compared with the open region derived from the electroglottograph (EGG) signals and speech signals. The results show that the proposed method based on DRF contour, derived from the speech signals, seems to perform better than the methods based on EGG signals.

摘要

本文提出了一种基于声道系统特征变化来确定声门周期开放阶段区域的方法。声门闭合阶段是声道系统主要激励的来源。由于声门下区域的耦合,开放阶段通过有效地增加声道长度来影响声道系统特征。为了确定声门开放区域,有必要从具有声门下耦合的片段中估计声道特征。所提出的方法在每个采样时刻使用一个严重衰减窗口(HDW)进行分析,以得出声道系统的主导共振频率(DRF)。与声门闭合区域相比,在声门开放区域期间,DRF轮廓会过渡到较低频率。使用HDW方法从浊音语音片段的声门周期中提取开放区域。将结果与从电声门图(EGG)信号和语音信号得出的开放区域进行比较。结果表明,基于语音信号得出的DRF轮廓的所提出方法似乎比基于EGG信号的方法表现更好。

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