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September 11, 20256 citations

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

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ZZZhaoyan Zhang

Key Points

  • Vocal tract contribution to vocal intensity depends on vocal fold adduction and fundamental frequency, establishing a critical link between anatomy and vocal output.
  • Simulations revealed that increasing vocal fold adduction raises the prominence of harmonics aligned with the first vocal tract resonance, enhancing vocal intensity.
  • Using computational models, this study explores how formant tuning and vocal fold behavior interact to influence sound pressure levels during speech production.
  • Findings suggest these techniques may optimize vocal intensity for performers, with different strategies effective at varying fundamental frequencies.

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.

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Cite This Study

Zhaoyan Zhang (2025) studied this question.

synapsesocial.com/papers/68c2a9c304ab598fffb89dc2https://doi.org/10.1121/10.0039239
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1A computational study of the effect of formant tuning on vocal intensity2025
  2. 2Detection of synchronization of the voice source and vocal tract in connected speech2025
  3. 3Controlling the convergence of vocal tract resonances to generate apparent multiphonic effects2025
  4. 4Experimental Investigation Of The Flow-Acoustic Interaction In Human Phonation2024
  5. 5Glottal inverse filtering and vocal tract tuning for the numerical simulation of vowel /a/ with different levels of vocal effort2024 · 1 citations