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声带双质量模型中湍流噪声引起的混沌振动。

Chaotic vibration induced by turbulent noise in a two-mass model of vocal folds.

作者信息

Jiang Jack J, Zhang Yu

出版信息

J Acoust Soc Am. 2002 Nov;112(5 Pt 1):2127-33. doi: 10.1121/1.1509430.

Abstract

The contribution of turbulent noise was modeled in symmetric vocal folds. A two-mass model was used to simulate irregular vocal fold vibrations. The threshold values of system parameters to produce irregular vibrations were decreased as a result of turbulent airflow. Periodic vibrations were then driven into the regions of irregular vibrations. Using nonlinear dynamics including Poincaré map and Lyapunov exponents, irregular vibrations were demonstrated as chaos. For the deterministic vocal-fold model with noise free and steady airflow, a fine period-doubling bifurcation cascade was shown in a bifurcation diagram. However, turbulent noise added to the vocal-fold model would induce chaotic vibrations, broaden the regions of irregular vocal fold vibrations, and inhibit the fine period-doubling bifurcations in the bifurcation diagrams. The perturbations from neurological and biomechanical effects were simulated as a random variation of the vocal fold stiffness. Turbulent noise as an external random source, as well as random stiffness perturbation as an internal random source, played important roles in the presence of irregular vocal fold vibrations.

摘要

在对称声带中对湍流噪声的贡献进行了建模。采用双质量模型来模拟不规则的声带振动。由于湍流气流,产生不规则振动的系统参数阈值降低。然后,周期性振动被驱动到不规则振动区域。利用包括庞加莱映射和李雅普诺夫指数在内的非线性动力学,不规则振动被证明为混沌。对于无噪声且气流稳定的确定性声带模型,在分岔图中显示出精细的倍周期分岔级联。然而,添加到声带模型中的湍流噪声会诱发混沌振动,拓宽不规则声带振动区域,并抑制分岔图中的精细倍周期分岔。将神经和生物力学效应产生的扰动模拟为声带刚度的随机变化。作为外部随机源的湍流噪声以及作为内部随机源的随机刚度扰动,在存在不规则声带振动的情况下发挥了重要作用。

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