Bibliography

[AF95]F. Auger and P. Flandrin. Improving the readability of time-frequency and time-scale representations by the reassignment method. IEEE Trans. Signal Process., 43(5):1068–1089, 1995.
[CHTorresani98]R. Carmona, W.L. Hwang, and B. Torrésani. Practical Time-Frequency Analysis: continuous wavelet and Gabor transforms, with an implementation in S. Volume 9 of Wavelet Analysis and its Applications. Academic Press, San Diego, 1998.
[CMDAF97]E. Chassande-Mottin, I. Daubechies, F. Auger, and P. Flandrin. Differential reassignment. Signal Processing Letters, IEEE, 4(10):293–294, 1997.
[FS98]Hans .G Feichtinger and Thomas Strohmer, editors. Gabor Analysis and Algorithms. Birkhäuser, Boston, 1998.
[FMGS65]JL Flanagan, DIS Meinhart, R.M. Golden, and M.M. Sondhi. Phase Vocoder. The Journal of the Acoustical Society of America, 38:939, 1965.
[GSB97]S.P. Ghael, A.M. Sayeed, and R.G. Baraniuk. Improved wavelet denoising via empirical Wiener filtering. In Proceedings of SPIE, volume 3169, 389–399. San Diego, CA, 1997. URL: http://www.dspace.rice.edu/bitstream/handle/1911/19895/Gha1997Jul5ImprovedW.PDF?sequence=1.
[Grochenig01]Karlheinz Gröchenig. Foundations of Time-Frequency Analysis. Birkhäuser, 2001.
[Har78]F.J. Harris. On the use of windows for harmonic analysis with the discrete Fourier transform. Proceedings of the IEEE, 66(1):51 – 83, jan 1978. doi:10.1109/PROC.1978.10837.
[JS02]Augustus Josephus Elisabeth Maria Janssen and Thomas Strohmer. Hyperbolic secants yield Gabor frames. Appl. Comput. Harmon. Anal., 12(2):259–267, 2002.
[Kow09]M. Kowalski. Sparse regression using mixed norms. Appl. Comput. Harmon. Anal., 27(3):303–324, 2009. URL: http://hal.archives-ouvertes.fr/hal-00202904/.
[KTorresani09]Matthieu Kowalski and Bruno Torrésani. Sparsity and persistence: mixed norms provide simple signal models with dependent coefficients. Signal, Image and Video Processing, 3(3):251–264, 2009. URL: http://hal.archives-ouvertes.fr/hal-00206245/en/.
[LO79]J.S. Lim and A.V. Oppenheim. Enhancement and bandwidth compression of noisy speech. Proceedings of the IEEE, 67(12):1586–1604, 1979.
[Mal98]Stephane Mallat. A wavelet tour of signal processing. Academic Press, San Diego, CA, 1998.
[MZ93]Stephane Mallat and Zhifeng Zhang. Matching pursuits with time-frequency dictionaries. IEEE Trans. Signal Process., 41(12):3397–3415, 1993.
[Nut81]A. Nuttall. Some windows with very good sidelobe behavior. IEEE Trans. Acoust. Speech Signal Process., 29(1):84–91, 1981.
[OS89]Alan V. Oppenheim and Ronald W. Schafer. Discrete-time signal processing. Prentice Hall, Englewood Cliffs, NJ, 1989.
[Puc95]M. Puckette. Phase-locked vocoder. Applications of Signal Processing to Audio and Acoustics, 1995., IEEE ASSP Workshop on, pages 222 –225, 1995.
[RY90]K.R Rao and P Yip. Discrete Cosine Transform, Algorithms, Advantages, Applications. Academic Press, 1990.
[WW93]E. Wesfreid and M.V. Wickerhauser. Adapted local trigonometric transforms and speech processing. IEEE Trans. Signal Process., 41(12):3596–3600, 1993.
[YMB08]Guoshen Yu, Stephane Mallat, and Emmanuel Bacry. Audio Denoising by Time-Frequency Block Thresholding. IEEE Trans. Signal Process., 56(5):1830–1839, 2008. URL: http://www.cmap.polytechnique.fr/~yu/publications/IEEEaudioblock.pdf.
[Wickerhauser94]Mladen Victor Wickerhauser. Adapted wavelet analysis from theory to software. Wellesley-Cambridge Press, Wellesley, MA, 1994.