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One-dimensional and three-dimensional propagation analyses of acoustic characteristics of Japanese and French vowel /a/ with nasal coupling

机译:日语和法语元音/ a /鼻耦合声学特性的一维和三维传播分析

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References(18) Cited-By(2) In this paper, we describe a comparison of the acoustic characteristics of one-dimensional and three-dimensional models of vocal tracts with nasal coupling. One-dimensional acoustic propagation is computed using an electric analog model. A finite element method is used for three-dimensional acoustic simulation. The comparison of these two approaches involves the vocal-tract shape of two subjects, one Japanese male and one French male pronouncing the vowel /a/ in their native language. Results show that the pole/zero pairs ascribed to the nasal coupling for both simulations appeared at almost the same frequency, at least below 2 kHz. Little difference between the one-dimensional and three-dimensional simulations in the transfer functions for the French subject is observed, since the three-dimensional mesh for the French subject is smoother. An extra pole exists in the transfer function of the three-dimensional model for the Japanese subject, possibly caused by the asymmetric structure of the laryngeal cavity. In the three-dimensional distribution of the active sound intensity vectors for the French subject, sound energy fluxes circulate between oral and nasal cavities coupled in the vicinity of the lips and nostrils.
机译:参考文献(18)Cited-By(2)在本文中,我们描述了带有鼻耦合的一维和三维声带模型的声学特性的比较。使用电模拟模型计算一维声传播。三维声学模拟使用有限元方法。这两种方法的比较涉及两个对象的声道形状,一个是日本男性,另一个是法国男性,他们用母语发音元音/ a /。结果表明,两次模拟归因于鼻耦合的极点/零点对几乎以相同的频率出现,至少低于2 kHz。在法国主题的传递函数中,在一维和三维模拟之间观察到的差异很小,因为法国主题的三维网格更平滑。对于日本人,三维模型的传递函数中存在一个额外的极点,这可能是由于喉腔的不对称结构引起的。在针对法国受试者的活动声强矢量的三维分布中,声能通量在耦合于嘴唇和鼻孔附近的口腔和鼻腔之间循环。

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