On the linearity of the relationship between the sound pressure level and the negative peak amplitude of the differentiated glottal flow in vowel production

Author:

Alku Paavo,Vintturi Juha,Vilkman Erkki

Publisher

Elsevier BV

Subject

Computer Science Applications,Computer Vision and Pattern Recognition,Linguistics and Language,Language and Linguistics,Communication,Modeling and Simulation,Software

Reference32 articles.

1. Average loudness level, mean fundamental frequency, and subglottal pressure: Comparison between female singers and nonsingers;Åkerlund;J. Voice,1994

2. Glottal wave analysis with Pitch Synchronous Iterative Adaptive Inverse Filtering;Alku;Speech Communication,1992

3. Alku, P., Vilkman, E., 1994. Estimation of the glottal pulseform based on discrete all-pole modeling. In: Proc. Internat. Conf. on Spoken Language Processing, Yokohama, Japan, 18–22 September, pp. 1619–1622

4. Parabolic spectral parameter – A new method for quantification of the glottal flow;Alku;Speech Communication,1997

5. Estimation of amplitude features of the glottal flow by inverse filtering speech pressure signals;Alku;Speech Communication,1998

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2. Biophysics of Vocal Production in Mammals;Vertebrate Sound Production and Acoustic Communication;2016

3. The harmonic and noise information of the glottal pulses in speech;Biomedical Signal Processing and Control;2014-03

4. Fundamental frequency influences the relationship between sound pressure level and spectral balance in female classically trained singers;The Journal of the Acoustical Society of America;2009-07

5. Characterization of Glottal Activity From Speech Signals;IEEE Signal Processing Letters;2009-06

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