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Vocal-tract modeling: fractional elongation of segment lengths in a waveguide model with half-sample delays

机译:声道建模:具有半采样延迟的波导模型中段长度的分数伸长

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摘要

Digital waveguide models are commonly used for simulating vocal-tract acoustics based on physiological data. In particular, waveguide models with half-sample delays are known to be well suited for speech production research. This paper presents enhancements to such a model, aimed at improved accuracy in mapping physiological vocal-tract data (shape and length of the airway) to waveguide parameters. The enhancements allow the length of the vocal tract to be continuously varied, thus enabling more realistic synthesis. This is achieved by smoothly varying the individual segment lengths of a piecewise-cylindrical representation of the airway, without altering the system sampling frequency. Fractional-delay filters are used for spatial interpolation of the digital waveguide model. The algorithms are validated by modeling the protrusion of lips, lowering of larynx and lengthening of intermediate segments for a static vowel shape.
机译:数字波导模型通常用于基于生理数据模拟声道声学。特别是,已知具有半采样延迟的波导模型非常适合语音制作研究。本文提出了这种模型的增强功能,旨在提高将生理声道数据(气道的形状和长度)映射到波导参数的准确性。增强功能使声道的长度连续变化,从而实现更逼真的合成。这是通过在不更改系统采样频率的情况下,平滑地改变气道的分段圆柱形表示的各个段长度来实现的。分数延迟滤波器用于数字波导模型的空间插值。通过为静态元音形状建模嘴唇的突出,降低喉部和延长中间节段来验证算法。

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