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On the Acoustic Sensitivity of a Symmetrical Two-Mass Model of the Vocal Folds to the Variation of Control Parameters

机译:关于对称声部的两质量对称模型的声敏感度对控制参数变化的影响

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摘要

The acoustic properties of a recently proposed two-mass model for vocal-fold oscillations are analysed in terms of a set of acoustic parameters borrowed from phenomenological glottal-flow signal models. The analysed vocal-fold model includes a novel description of flow separation within the glottal channel at a point whose position may vary in time when the channel adopts a divergent configuration. It also assumes a vertically symmetrical glottal structure, a hypothesis that does not hinder reproduction of glottal-flow signals and that reduces the number of control parameters of the dynamical system governing vocal-fold oscillations. Measuring the sensitivity of acoustic parameters to the variation of the model control parameters is essential to describe the actions that the modelled glottis employs to produce voiced sounds of different characteristics. In order to classify these actions, we applied an algorithmic procedure in which the implementation of the vocal-fold model is followed by a numerical measurement of the acoustic parameters describing the generated glottal-flow signal. We use this algorithm to generate a large database with the variation of acoustic parameters in terms of the model control parameters. We present results concerning fundamental frequency, intensity and pulse shape control in terms of subglot-tal pressure, muscular tension, and the effective mass of the folds participating in vocal-fold vibration. We also produce evidence for the identification of vocal-fold oscillation regimes with the first and second laryngeal mechanisms, which are the most common phonation modes used in voiced-sound production. In terms of the model, the distinction between these mechanisms is closely related to the detection of glottal leakage, i.e. to an incomplete glottal closure during vocal-fold vibration. The algorithm is set to detect glottal leakage when transglottal air flow does not reach zero during the quasi-closed phase. It is also designed to simulate electroglottographic signals with the vocal-fold model. Numerical results are compared with experimental electroglottograms. In particular, a strong correspondence is found between the features of experimental and numerical electroglottograms during the transition between different laryngeal mechanisms.
机译:根据从现象学的声门流信号模型中借用的一组声学参数,分析了最近提出的用于声带振荡的两质量模型的声学特性。分析的声带模型包括对声门通道内流动分离的新颖描述,该点在通道采用发散配置时其位置可能随时间变化。它还假定了垂直对称的声门结构,这一假设不妨碍声门流信号的再现,并且减少了控制声带振荡的动力系统的控制参数的数量。测量声学参数对模型控制参数变化的敏感度对于描述建模的声门用来产生不同特征的有声声音的动作至关重要。为了对这些动作进行分类,我们应用了一种算法程序,在该程序中,对声带模型的实现之后是对描述生成的声门流信号的声学参数进行数值测量。我们使用此算法来生成一个大型数据库,该模型的声学参数随模型控制参数的变化而变化。我们介绍了有关基本频率,强度和脉冲形状控制的结果,包括声门下压力,肌肉张力和参与声带振动的褶皱的有效质量。我们还提供了用于识别具有第一和第二喉部机制的声带振荡状态的证据,这是在发声中使用的最常见的发声模式。就模型而言,这些机制之间的区别与声门泄漏的检测密切相关,即与声带振动过程中声门闭合不完全有关。该算法设置为在准闭合阶段当跨声门气流未达到零时检测声门泄漏。它也被设计为通过声带模型来模拟电声成像信号。将数值结果与实验电描记图进行比较。特别地,在不同的喉部机制之间的过渡过程中,发现了实验性电描记图和数字电描记图的特征之间的强烈对应关系。

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