Determining the length and cross-sectional area of the vocal tract jointly from formants using acoustic sensitivity function
Author:
Affiliation:
1. Faculty of Design, Kyushu University
Publisher
Acoustical Society of Japan
Subject
Acoustics and Ultrasonics
Reference19 articles.
1. 1) J. Schroeter and M. M. Sondhi, ``Techniques for estimating vocal-tract shapes from the speech signal,'' IEEE Trans. Speech Audio Process., 2, 133-150 (1994).
2. 2) K. Iskarous, ``Vowel constrictions are recoverable from formants,'' J. Phonet., 38, 375-387 (2010).
3. 3) M. R. Schroeder, ``Determination of the geometry of the human vocal tract by acoustic measurements,'' J. Acoust. Soc. Am., 41, 1002-1010 (1967).
4. 4) P. Mermelstein, ``Determination of the vocal-tract shape from measured formant frequencies,'' J. Acoust. Soc. Am., 41, 1283-1294 (1967).
5. 5) M. M. Sondhi and J. R. Resnick, ``The inverse problem for the vocal tract: Numerical methods, acoustical experiments, and speech synthesis,'' J. Acoust. Soc. Am., 73, 985-1002 (1983).
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1. Vocal Tract Length Estimation Using Accumulated Means of Formants and Its Effects on Speaker-Normalization;IEEE/ACM Transactions on Audio, Speech, and Language Processing;2021
2. Inverse estimation of the vocal tract shape based on a vocal tract mapping interface;The Journal of the Acoustical Society of America;2019-04
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