Journal of Engineering and Applied Sciences

Year: 2018
Volume: 13
Issue: 13
Page No. 4932 - 4938

Analysis of Vocal Tract Shape Variability for Different Conditions in Indian English Vowels

Authors : Anil Kumar Chandrashekar and M.B. Manjunatha

References

Black, N.D., 1988. Application of vocal tract shapes to vowel production. Proceedings of the IEEE Annual International Conference on Engineering in Medicine and Biology Society, November 4-7, 1988, IEEE, New Orleans, Louisiana, pp: 1535-1536.

Khodai-Joopari, M., F. Clermont and M. Barlow, 2004. Speaker variability on a continuum of spectral sub-bands from 297-speakers non-contemporaneous cepstra of Japanese vowels. Proceedings of the 10th Australian International Conference on Speech Science and Technology, December 8-10, 2004, Macquarie University, Sydney, New South Wales, pp: 504-509.

Kodandaramaiah, G.N., M.N. Giriprasad and M. Mukundarao, 2010. Implementation of LPC based vocal tract shape estimation for vowels. Technol. World Q. J., 5: 97-102.

Kuc, R., F. Tuteur and J. Vaisnys, 1985. Determining vocal tract shape by applying dynamic constraints. Proceedings of the IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP'85) Vol. 10, April 26-29, 1985, IEEE, Tampa, Florida, USA., pp: 1101-1104.

Kumar, A., G.K. Ramaiah and M.B. Manjunatha, 2015. Speaker based vocal tract shape estimation for kannada vowels. Proceedings of the International Conference on Electrical, Electronics, Signals, Communication and Optimization (EESCO), January 24-25, 2015, IEEE, Visakhapatnam, India, ISBN:978-1-4799-7676-8, pp: 1-6.

Kumar, A., M.B. Manjunatha and G.K. Ramaiah, 2015. Vocal tract shape estimation of vowels & CVVC for diversified Indian English speakers. Proceedings of the International Conference on Electrical, Electronics, Signals, Communication and Optimization (EESCO), January 24-25, 2015, IEEE, Visakhapatnam, India, ISBN:978-1-4799-7676-8, pp: 1-7.

Kumar, C.A., K.M.S. Prasad, M.B. Manjunatha and G.N.K. Ramaiah, 2015. Basic acoustic features analysis of vowels and C-V-C of Indian english language. ITSI. Trans. Electr. Electron. Eng., 3: 20-23.
Direct Link  |  

Laprie, Y. and B. Mathieu, 1998. A variational approach for estimating vocal tract shapes from the speech signal. Proceedings of the IEEE International Conference on Acoustics, Speech and Signal Processing Vol. 2, May 15, 1998, IEEE, Seattle, Washington, USA., pp: 929-932.

Paige, A. and V. Zue, 1970. Calculation of vocal tract length. IEEE. Trans. Audio Electroacoust., 18: 268-270.
CrossRef  |  Direct Link  |  

Prasad, K.M.S., C.A. Kumar, M.B. Manjunatha and G.N.K. Ramaiah, 2015. Gender based acoustic features and spectrogram analysis for kannada phonetics. ITSI. Trans. Electr. Electron. Eng., 3: 16-19.
Direct Link  |  

Prasad, S., A. Kumar and K. Ramaiah, 2015. Various front end tools for digital speech processing. Proceedings of the 2nd International Conference on Computing for Sustainable Global Development (INDIACom), March 11-13, 2015, IEEE, New Delhi, India, ISBN:978-9-3805-4415-1, pp: 905-911.

Shah, M.S. and P.C. Pandey, 2006. Estimation of vocal tract shape for VCV syllables for a speech training aid. Proceedings of the IEEE-EMBS 27th Annual International Conference on Engineering in Medicine and Biology Society, January 17-18, 2006, IEEE, Shanghai, China, pp: 6642-6645.

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