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声道对发声强度的贡献:声带内收、共振峰调谐和基频之间的相互作用。

Vocal tract contribution to vocal intensity: Interaction between vocal fold adduction, formant tuning, and fundamental frequency.

作者信息

Zhang Zhaoyan

机构信息

Department of Head and Neck Surgery, University of California, Los Angeles, 31-24 Rehab Center, 1000 Veteran Avenue, Los Angeles, California 90095-1794, USA.

出版信息

J Acoust Soc Am. 2025 Sep 1;158(3):1904-1913. doi: 10.1121/10.0039239.

Abstract

The goal of this study was to understand the interaction between the voice source spectral shape, formant tuning, and fundamental frequency in determining the vocal tract contribution to vocal intensity. Computational voice simulations were performed with parametric variations in both vocal fold and vocal tract configurations. The vocal tract contribution to vocal intensity was quantified as the difference in the A-weighted sound pressure level between the radiated sound pressure and the sound pressure at the glottis. The results from the simulations showed that the vocal tract contribution to vocal intensity depends strongly on the amplitude of the first vocal tract resonance. Two strategies to increase vocal tract contribution to vocal intensity were identified. The first strategy was to increase vocal fold adduction, which increases the relative prominence of the harmonics near the first vocal tract resonance. The second strategy was to bring a vocal tract resonance and a nearby harmonic closer in frequency, often known as formant tuning. In this study, increasing vocal fold adduction was the primary strategy at low fundamental frequencies, whereas formant tuning was more effective at high fundamental frequencies, particularly when formant tuning involves the strongest harmonic in the voice source spectrum.

摘要

本研究的目的是了解声源频谱形状、共振峰调谐和基频之间的相互作用,以确定声道对声音强度的贡献。通过改变声带和声道配置的参数进行了语音计算模拟。声道对声音强度的贡献被量化为辐射声压与声门处声压之间的A加权声压级差值。模拟结果表明,声道对声音强度的贡献在很大程度上取决于声道第一共振峰的幅度。确定了两种增加声道对声音强度贡献的策略。第一种策略是增加声带内收,这会增加声道第一共振峰附近谐波的相对突出度。第二种策略是使声道共振峰和附近的谐波在频率上更接近,这通常被称为共振峰调谐。在本研究中,增加声带内收是低基频下的主要策略,而共振峰调谐在高基频下更有效,特别是当共振峰调谐涉及声源频谱中最强的谐波时。

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