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TU Berlin

Inhalt des Dokuments

Publikationsliste aus einer BibTeX-Datei

Aaron S. Master (Summer 2002). Nonstationary Sinusoidal Model Frequency Parameter Estimation via Fresnel Integral Analysis. Submitted as Stanford University EE 391 Report


J. R. Beltán and F. Beltrán (September 8-11, 2003). Additive Synthesis Based on the Continous Wavelet Transform: A Sinusoidal Plus Transient Model. Proc of the 6th Int Conference on Digital Audio Effects (DAFx-03) London, UK


A. Rakotomamonjy and S. Canu (September 2005). Frames, Reproducing Kernels, Regularization and Learning. Journal of Machine Learning Research, 1485–1515.


P. F. Felzenszwalb and D. P. Huttenlocher (September 2004). Efficient Graph-Based Image Segmentation. International Journal of Computer Vision


I. Djurovic and L. Stankovic and M.J. Bastiaans (September 2001). Multidimensional reassignment method. Proc. TELSIKS 2001, 5th International Conference on Telecommunications in Modern Satellite, Cable and Broadcasting Services, Nis, Yugoslavia, 19-21


L. Stanković and V. Katkovnik (September 1998). Algorithm for the Instantaneous Frequency Estimation Using Time-Frequency Distributions with Adaptive Window Width. IEEE Signal Processing Letters, Vol 5, No 9


L. Stanković and V. Katkovnik (September 1998). Instantaneous Frequency Estimation Using the Wigner Distribution with Varying and Data-Driven Window Length. IEEE Transactions on Signal Processing, Vol 46, No 9


S. W. Hainsworth and P. J. Wolfe (September 17-22nd, 2001). Time Frequency reassigned for Musical Analysis. Proceedings of the International Computer Music Conference, Havana, Cuba


E. Chassande-Mottin and I. Daubechies and F. Auger and P. Flandrin (Octobre 1997). Differential Reassignment. IEEE Signal Processing Letters


F. Auger and P. Flandrin (Octobre 1993). The Why and How of Time-Frequency Reassignment. IEEE-SP Int. Symp. on Time-Frequency and Time-Scale Analysis, Philadelphia (PA)


S. W. Hainsworth and M. D. Macleod and P. J. Wolfe (October 2001). Analysis of reassigned spectrograms for musical transcription. Proceedings of the IEEE Workshop on Applications of Signal Processing to Audio and Acoustics, pages 43-46, Mohonk, NY



K. D. Mielenz (May-June 1997). Computation of Fresnel Integrals. Journal of Research of the National Institute of Standards and Technology, Volume 102, Number 3


Guillemard, M. and Iske, A. (May 2009). Analysis of high-dimensional signal data by manifold learning and convolutions. Sampling Theory and Applications (SampTA'09) Laurent Fesquet and Bruno Torrésani (eds.), Marseille (France), 287-290.


M. Jackson and I. S. Burnett (June 1999). Phase-Space Portraits of Speech Employing Mutual Information and Perceptual Masking. Proc. IEEE Speech Coding Workshop, Porvoo, Finland, pp. 61-63


J. I. Makhoul (June 1981). Adaptive Lattice Analysis of Speech. IEEE Transactions on Circuits and Systems, Vol Cas 28, No 6


M. R. Portnoff (June 1981). Short Time Fourier Analysis of Sampled Speech. IEEE Transactions on Acoustics, Speech, and Signal Processing


M. R. Portnoff (June 1976). Implementation of the Digital Phase Vocoder Using the Fast Fourier Transform. IEEE Transactions on Acoustics, Speech, and Signal Processing


K. D. Mielenz (July-August 2000). Computation of Fresnel Integrals II. Journal of Research of the National Institute of Standards and Technology, Volume 105, Number 4


D. N. Rockmore (January/February 2000). The FFT - An algorithm the whole family can use. Computing in Science and Engineering, 60–64.


D. O'Brien and A. I. Monaghan (January 2001). Concatenative Synthesis Based on a Harmonic Model. IEEE Transactions on Speech and Audio Processing, Vol 9, Num 1


Brun, A. (February 2006). Manifold Learning and Representations for Image Analysis and Visualization. Linköping University, Department of Biomedical Engineering.


M. R. Portnoff (February 1980). Time Frequency Representations of Digital Signals and Systems Based on Short-Time Fourier Analysis. IEEE Transactions on Acoustics, Speech, and Signal Processing


R. E. Crochiere (February 1980). A Weighted Overlap-Add Method of Short-Time Fourier Analysis/Synthesis. IEEE Transactions on Acoustics, Speech, and Signal Processing


S. W. Hainsworth (December 2003). Techniques for the Automated Analysis of Musical Audio. University of Cambridge, Department of Engineering, Signal Processing Group


P. Masri (December 1996). Computer Modelling of Sound for Transformation and Synthesis of Musical Signals. Dept. of Electrical and Electronic Engineering, University of Bristol


M. A. Casey and A. Westner (August 2000). Separation of Mixed Audio Sources by Independent Subspace Analysis. Proceedings of the International Computer Music Conference, ICMA, Berlin


L. Stanković and V. Katkovnik (April 1999). The Wigner Distribution of Noisy Signals with Adaptive Time-Frequency Varying Window. IEEE Transactions on Signal Processing, Vol 47, No 4


K. Mischaikow and V. Nanda (2013). Morse Theory for Filtrations and Efficient Computation of Persistent Homology. to appear in Discrete and Computational Geometry


Casazza, P.G. and Kutyniok, G. (2012). Finite frames: theory and applications. Birkhäuser.


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