微调发声模型,利用元智方法估算影响压力

C. Calvache-Mora, L. Soláque, Alexandra Velasco, Lina Peñuela
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摘要

介绍。在采用弹簧-质量-阻尼框架的发声模型中,精确确定符合声带生理特征的阻尼系数至关重要,同时还要考虑到粘弹性特性表示中的潜在变化。本研究旨在对基于质量-弹簧-阻尼系统的发声模型进行参数拟合,其中包含声门下压力相互作用,目的是准确模拟声带在发音过程中产生的碰撞力。方法:采用元启发式搜索算法进行参数合成。该算法适用于弹性系数 c1 和 c2,以及阻尼系数 ε1 和 ε2,它们与模型的质量矩阵直接相关。这有助于调整褶皱的组成,以实现理想的生理行为。在正常条件下,发声系统在每个模拟周期的表现都与预先设定的标准进行了比较。该算法通过评估所获得信号的关键特征与预期特征之间的差异来确定模拟终点。通过参数拟合,可以近似模拟生理学发声行为,从而估算出声带在发声过程中受到的冲击力。
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Fine-Tuning of a Voice Production Model to Estimate Impact Stress Using a Metaheuristic Method
Introduction. In vocal production models employing spring-mass-damper frameworks, precision in determining damping coefficients that align with physiological vocal fold characteristics is crucial, accounting for potential variations in the representation of viscosity-elasticity properties. Objective. This study aims to conduct a parametric fitting of a vocal production model based on a mass-spring-damper system incorporating subglottic pressure interaction, with the purpose of accurately modeling the collision forces exerted by vocal folds during phonation. Method. A metaheuristic search algorithm was employed for parametric synthesis. The algorithm was applied to elasticity coefficients c1 and c2, as well as damping coefficients ε1 and ε2, which directly correlate with the mass matrices of the model. This facilitates the adjustment of fold composition to achieve desired physiological behavior. Results. The vocal system's behavior for each simulation cycle was compared to a predefined standard under normal conditions. The algorithm determined the simulation endpoint by evaluating discrepancies between key features of the obtained signals and the desired ones. Conclusion. Parametric fitting enabled the approximation of physiological vocal production behavior, providing estimates of the impact forces experienced by vocal folds during phonation.
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