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Two-dimensional vocal tracts with three-dimensional behavior in the numerical generation of vowels
- Source :
- The Journal of the Acoustical Society of America
- Publication Year :
- 2014
- Publisher :
- Acoustical Society of America (ASA), 2014.
-
Abstract
- Two-dimensional (2D) numerical simulations of vocal tract acoustics may provide a good balance between the high quality of three-dimensional (3D) finite element approaches and the low computational cost of one-dimensional (1D) techniques. However, 2D models are usually generated by considering the 2D vocal tract as a midsagittal cut of a 3D version, i.e., using the same radius function, wall impedance, glottal flow, and radiation losses as in 3D, which leads to strong discrepancies in the resulting vocal tract transfer functions. In this work, a four step methodology is proposed to match the behavior of 2D simulations with that of 3D vocal tracts with circular cross-sections. First, the 2D vocal tract profile becomes modified to tune the formant locations. Second, the 2D wall impedance is adjusted to fit the formant bandwidths. Third, the 2D glottal flow gets scaled to recover 3D pressure levels. Fourth and last, the 2D radiation model is tuned to match the 3D model following an optimization process. The procedure is tested for vowels /a/, /i/, and /u/ and the obtained results are compared with those of a full 3D simulation, a conventional 2D approach, and a 1D chain matrix model.
- Subjects :
- Glottis
Acoustics and Ultrasonics
Voice Quality
Acoustics
Finite Element Analysis
Vocal Cords
Models, Biological
01 natural sciences
Transfer function
Speech Acoustics
030507 speech-language pathology & audiology
03 medical and health sciences
Quality (physics)
Phonation
Arts and Humanities (miscellaneous)
Phonetics
0103 physical sciences
Humans
Computer Simulation
010301 acoustics
Electrical impedance
Mathematics
Numerical analysis
Work (physics)
Numerical Analysis, Computer-Assisted
Finite element method
Biomechanical Phenomena
Formant
0305 other medical science
Vocal tract
Subjects
Details
- ISSN :
- 00014966
- Volume :
- 135
- Database :
- OpenAIRE
- Journal :
- The Journal of the Acoustical Society of America
- Accession number :
- edsair.doi.dedup.....8af28f2a01cf390e87f9080cdbeed8c9