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- 1
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C. Anderton, Digital Delay Handbook,
New York: Amsco Publications, 1985.
- 2
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J. Blauert, Spatial Hearing. The Psychophysics of Human Sound
Localization,
Cambridge, MA, USA: MIT Press, 1997.
- 3
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H. Bode, ``History of electronic sound modification,'' Journal of the
Audio Engineering Society, vol. 32, pp. 730-739, Oct. 1984.
- 4
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J. M. Chowning, ``The simulation of moving sound sources,'' Journal of the Audio Engineering Society, vol. 19, pp. 2-6, 1971.
- 5
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P. Cook and G. Scavone, Synthesis Tool Kit in C++, Version 4,
https://ccrma.stanford.edu/software/stk/,
2010,
see also
https://ccrma.stanford.edu/~jos/stkintro/.
- 6
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S. Foster, ``Impulse response measurements using golay codes,'' Proc. IEEE ICASSP-86, pp. 929-932, 1986.
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G. H. Golub and C. F. Van Loan, Matrix Computations, 3rd Edition,
Baltimore: The Johns Hopkins University Press, 1996.
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C. A. Henricksen, ``Unearthing the mysteries of the Leslie cabinet,'' Recording Engineer/Producer magazine, Apr. 1981,
http://www.theatreorgans.com/hammond/faq/mystery/mystery.html.
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T. I. Laakso, V. Välimäki, M. Karjalainen, and U. K. Laine, ``Splitting
the Unit Delay--Tools for Fractional Delay Filter Design,'' IEEE
Signal Processing Magazine, vol. 13, pp. 30-60, Jan. 1996.
- 10
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J. Laroche, ``Time and pitch scale modification of audio signals,'' in Applications of DSP to Audio & Acoustics (M. Kahrs and K. Brandenburg,
eds.), pp. 279-309, Boston/Dordrecht/London: Kluwer Academic Publishers,
1998.
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A. V. Oppenheim and R. W. Schafer, Digital Signal Processing,
Englewood Cliffs, NJ: Prentice-Hall, 1975.
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A. D. Pierce, Acoustics,
American Institute of Physics, for the Acoustical Society of America, 1989,
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D. Rocchesso, ``Fractionally addressed delay lines,'' IEEE Transactions on Speech
and Audio Processing, vol. 8, pp. 717-727, Nov. 2000.
- 14
-
J. O. Smith, ``Artificial Reverberation,'' in Digital Waveguide Modeling
of Musical Instruments, (CCRMA, Stanford University),
https://ccrma.stanford.edu/~jos/pasp/Artificial_Reverberation.html,
May 9, 2002.
- 15
-
J. O. Smith, Mathematics of the Discrete Fourier Transform (DFT), with
Audio Applications, Second Edition,
https://ccrma.stanford.edu/~jos/mdft/,
Apr. 2007,
online book.
- 16
-
J. O. Smith and J. S. Abel, ``Bark and ERB bilinear transforms,'' IEEE
Transactions on Speech and Audio Processing, pp. 697-708, Nov. 1999.
- 17
-
J. O. Smith and P. Gossett, ``A flexible sampling-rate conversion method,'' in
Proc. 1984 Int. Conf. Acoustics, Speech, and Signal Processing
(ICASSP-84), San Diego, vol. 2, (New York), pp. 19.4.1-19.4.2, IEEE
Press, Mar. 1984,
expanded tutorial and associated free software available at the
Digital Audio Resampling Home Page:
https://ccrma.stanford.edu/~jos/resample/.
- 18
-
V. Välimäki, Discrete-Time Modeling of Acoustic Tubes Using
Fractional Delay Filters,
PhD thesis, Report no. 37, Helsinki University of Technology, Faculty
of Electrical Engineering, Laboratory of Acoustic and Audio Signal Processing, Espoo,
Finland, Dec. 1995,
http://www.acoustics.hut.fi/~vpv/publications/vesa_phd.html.
- 19
-
E. M. Wenzel, ``Localization in virtual acoustic displays,'' Presence,
vol. 1, pp. 80-107, Summer 1992.
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