Applied Speech and Audio Processing: With matlab examples
References [1] J. Barkera and M. Cooke. Is the sine-wave speech cocktail party worth attending? Speech Comm., 27
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Applied Speech and Audio Processing With MATLAB Examples ( PDFDrive )
References
[1] J. Barkera and M. Cooke. Is the sine-wave speech cocktail party worth attending? Speech Comm., 27(3-4): 159–174, 1999. [2] M. R. Schroeder, B.S. Atal, and J.L. Hall. Optimizing digital speech coders by exploiting masking properties of the human ear. J. Acoustical Soc. America, 66(6): 1647–1652, 1979. [3] I. Witten. Principles of Computer Speech. Academic Press, 1982. [4] B. C. J. Moore. An Introduction to the Psychology of Hearing. Academic Press, 1992. [5] I. B. Thomas. The influence of first and second formants on the intelligibility of clipped speech. J. Acoustical Soc. America, 16: 182–185, 1968. [6] J. Pickett. The Sounds of Speech Communication. Allyn and Bacon, 1980. [7] Z. Li, E. C. Tan, I. McLoughlin, and T. T. Teo. Proposal of standards for intelligibility tests of Chinese speech. IEE Proc. Vision Image Sig. Proc., 147(3): 254–260, 2000. [8] F. L. Chong, I. McLoughlin, and K. Pawlikowski. A methodology for improving PESQ accuracy for Chinese speech. In Proc. IEEE TENCON, Melbourne, November 2005. [9] K. Kryter. The Handbook of Hearing and the Effects of Noise. Academic Press, 1994. [10] L. L. Beranek. The design of speech communications systems. Proc. IRE, pages 880–890, 1947. [11] W. Tempest, editor. The Noise Handbook. Academic Press, 1985. [12] M. Mourjopoulos, J. Tsoukalas, and D. Paraskevas. Speech enhancement using psychoacoustic criteria. In Proc. Int. Conf. on Acoustics, Speech and Signal Processing, pages 359–362, 1991. [13] F. White. Our Acoustic Environment. John Wiley, 1976. [14] P. J. Blamey, R. C. Dowell, and G. M. Clark. Acoustic parameters measured by a formant estimating speech processor for a multiple-channel cochlear implant. J. Acoustical Soc. America, 82(1): 38–47, 1987. [15] R. W. Schaefer and L. R. Rabiner. Digital representation of speech signals. Proc. IEEE, 63(4): 662–677, 1975. [16] A. D. Sharpley. Dynastat webpages, 1996–2006. URL http://www.dynastat.com/Speech Intelligibility.htm. [17] S. F. Boll. Suppression of acoustic noise in speech using spectral subtraction. IEEE Trans. Acous- tics, Speech Signal Proc., 27(2): 113–120, 1979. [18] R. E. P. Dowling and L. F. Turner. Modelling the detectability of changes in auditory signals. Proc. Int. Conf. on Acoustics, Speech and Signal Processing, Vol. 1 pages 133–136, 1993. [19] J. I. Alcantera, G. J. Dooley, P. J. Blamey, and P. M. Seligman. Preliminary evaluation of a formant enhancement algorithm on the perception of speech in noise for normally hearing listeners. J. Audiology, 33(1): 15–24, 1994. [20] J. G. van Velden and G. F. Smoorenburg. Vowel recognition in noise for male, female and child voices. Proc. Int. Conf. on Acoustics, Speech and Signal Processing, pages 796–799, 1995. 57 |
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