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- 1
-
K. J. åAstrom, Introduction to Stochastic Control Theory,
New York: Academic Press, 1970.
- 2
-
J. Abel and J. O. Smith, ``Robust design of very high-order allpass dispersion
filters,'' Proceedings of the Conference on Digital Audio Effects (DAFx-06), Montreal,
Canada, Sept. 2006,
http://www.dafx.de/.
- 3
-
J. S. Abel and D. P. Berners, Music 424 Handouts: Signal Processing
Techniques for Digital Audio Effects,
http://ccrma.stanford.edu/courses/424/, Spring 2004.
- 4
-
M. Abramowitz and I. A. Stegun, eds., Handbook of Mathematical Functions,
New York: Dover, 1965.
- 5
-
S. Adachi and M. Sato, ``On the transition of lip-vibration states in the brass
instrument,'' in Proceedings of the International Symposium on Musical Acoustics (ISMA-95),
Dourdan, France, (France), pp. 17-22, Société Français d'Acoustique,
July 1995.
- 6
-
S. Adachi and M. Sato, ``Time-domain simulation of sound production in the
brass instrument,'' Journal of the Acoustical Society of America, vol. 97,
pp. 3850-3861, 1995.
- 7
-
S. Adachi and M. Sato, ``Trumpet sound simulation using a two-dimensional lip
vibration model,'' Journal of the Acoustical Society of America, vol. 99,
pp. 1200-1209, 1996.
- 8
-
J.-M. Adrien, ``The missing link: Modal synthesis,'' in Representations of
Musical Signals (G. De Poli, A. Picialli, and C. Roads, eds.),
pp. 269-297, Cambridge, MA: MIT Press, 1991.
- 9
-
J.-M. Adrien and J. Morrison, ``Mosaïc: A modular program for synthesis by
modal superposition,'' in Proceedings of the Colloquium on Physical Modeling,
(Grenoble, France), ACROE, 1990.
- 10
-
J. Agullo, A. Barjau, and J. Martinez, ``Alternatives to the impulse response
h(t) to describe the acoustical behavior of conical ducts,'' Journal of the Acoustical Society of America, vol. 84, pp. 1606-1612, Nov. 1988.
- 11
-
J. Agullo, A. Barjau, and J. Martinez, ``Conical bores. Part II:
Multiconvolution,'' Journal of the Acoustical Society of America, vol. 84,
pp. 1620-1627, Nov. 1988.
- 12
-
J. Agullo, A. Barjau, and J. Martinez, ``On the time-domain description of
conical bores,'' Journal of the Acoustical Society of America, vol. 91,
pp. 1099-1105, Feb. 1992.
- 13
-
M. Aird, J. Laird, and J. ffitch, ``Modelling a drum by interfacing 2-D and
3-D waveguide meshes,'' in Proceedings of the International Computer
Music Conference, (Berlin, Germany), pp. 82-85, Sept. 2000.
- 14
-
J. B. Allen, ``private communication,'' 1983.
- 15
-
J. B. Allen and D. A. Berkley, ``Image method for efficiently simulating
small-room acoustics,'' Journal of the Acoustical Society of America, vol. 65,
pp. 943-950, 1979.
- 16
-
J. B. Allen and L. R. Rabiner, ``A unified approach to short-time Fourier
analysis and synthesis,'' Proc. IEEE, vol. 65, pp. 1558-1564, Nov.
1977.
- 17
-
N. Amir, G. Rosenhouse, and U. Shimony, ``Reconstructing the bore of brass
instruments: Theory and experiment,'' in Proceedings of the Stockholm Musical
Acoustics Conference (SMAC-93), (Stockholm), pp. 470-475, Royal Swedish
Academy of Music, July 1993.
- 18
-
N. Amir, G. Rosenhouse, and U. Shimony, ``Discrete model for tubular acoustic
systems with varying cross section--the direct and inverse problems. Part
1: Theory,'' Acta Acustica, vol. 81, pp. 450-462, 1995.
- 19
-
N. Amir, G. Rosenhouse, and U. Shimony, ``Discrete model for tubular acoustic
systems with varying cross section - the direct and inverse problems. Part
1: Theory, and Part 2: Experiment,'' Acta Acustica, vol. 81,
pp. 450-474, 1995.
- 20
-
C. Anderton, Digital Delay Handbook,
New York: Amsco Publications, 1985.
- 21
-
M. Aramaki, J. Bensa, L. Daudet, P. Guillemain, and R. Kronland-Martinet,
``Resynthesis of coupled piano string vibrations based on physical
modeling,'' Journal of New Music Research, vol. 30, no. 3, pp. 213-26,
2001.
- 22
-
A. Askenfelt, ed., Five Lectures on the Acoustics of the Piano,
Stockholm: Royal Swedish Academy of Music, 1990,
lectures by H. A. Conklin, Anders Askenfelt and E. Jansson, D. E.
Hall, G. Weinreich, and K. Wogram. Sound example CD included. Publication
number 64.
http://www.speech.kth.se/music/5_lectures/.
- 23
-
B. S. Atal and L. S. Hanauer, ``Speech analysis and synthesis by linear
prediction of the speech wave,'' Journal of the Acoustical Society of America,
vol. 50, pp. 637-655, 1971.
- 24
-
B. S. Atal and M. R. Schroeder, ``Predictive coding of speech signals and
subjective error criteria,'' IEEE Transactions on Acoustics, Speech, Signal
Processing, vol. 27, pp. 247-254, June 1979.
- 25
-
F. Avanzini, S. Serafin, and D. Rocchesso, ``Modeling interactions between
rubbed dry surfaces using an elasto-plastic friction model,'' in Proceedings of the COST-G6 Conference on Digital Audio Effects (DAFx-02), Hamburg, Germany,
pp. 111-116, September 2002,
http://www.dafx.de/.
- 26
-
R. D. Ayers, L. J. Eliason, and D. Mahgerefteh, ``The conical bore in musical
acoustics,'' American Journal of Physics, vol. 53, pp. 528-537, June
1985.
- 27
-
B. Bank and V. Välimäki, ``Robust loss filter design for digital
waveguide synthesis of string tones,'' IEEE Signal Processing Letters,
vol. 10, pp. 18-20, January 2003.
- 28
-
B. Bank and L. Sujbert, ``Generation of longitudinal vibrations in piano
strings: From physics to sound synthesis,'' Journal of the Acoustical Society of America, submitted for review.
- 29
-
B. Bank, F. Avanzini, G. Borin, G. D. Poli, F. Fontana, , and D. Rocchesso,
``Physically informed signal processing methods for piano sound synthesis: A
research overview,'' EURASIP Journal on Applied Signal Processing,
vol. 2003, Sept. 2003,
http:
//www.mit.bme.hu/~bank/publist/jasp03.pdf.
- 30
-
E. Barbour, ``The cool sound of tubes,'' IEEE Spectrum, pp. 24-35, Aug.
1998.
- 31
-
B. Bartlett, ``A scientific explanation of phasing (flanging),'' Journal of the Audio Engineering Society, vol. 18, pp. 674-675, Jun 1970.
- 32
-
M. J. Beeson and D. T. Murphy, ``RoomWeaver: A digital waveguide mesh based
room acoustics research tool,'' in Proceedings of the Conference on Digital Audio Effects
(DAFx-04), Naples, Italy, Oct. 2004,
http://www.dafx.de/.
- 33
-
V. Belevitch, ``Summary of the history of circuit theory,'' Proceedings of the IRE,
vol. 50, pp. 848-855, May 1962.
- 34
-
V. Belevitch, Classical Network Theory,
San Francisco: Holden Day, 1968.
- 35
-
B. Beliczynski, I. Kale, and G. D. Cain, ``Approximation of FIR by IIR
digital filters: An algorithm based on balanced model reduction,'' IEEE
Transactions on Acoustics, Speech, Signal Processing, vol. 40, pp. 532-542, Mar.
1992.
- 36
-
A. H. Benade, ``Equivalent circuits for conical waveguides,'' Journal of the Acoustical Society of America, vol. 83, pp. 1764-1769, May 1988.
- 37
-
A. H. Benade, Fundamentals of Musical Acoustics,
New York: Dover, 1990.
- 38
-
A. H. Benade and E. V. Jansson, ``On plane and spherical waves in horns with
nonuniform flare. I. theory of radiation, resonance frequencies, and mode
conversion,'' Acustica, vol. 31, no. 2, pp. 80-98, 1974.
- 39
-
G. Bennett and X. Rodet, ``Synthesis of the singing voice,'' in Current
Directions in Computer Music Research (M. V. Mathews and J. R. Pierce,
eds.), pp. 19-44, Cambridge, MA: MIT Press, 1989.
- 40
-
J. Bensa, ``Stiff piano string modeling: Computational comparison between
finite differences and digital waveguide,'' in Acoustical Society of America,
Program of the 148th Meeting (abstract and presentation), San Diego,
California, Nov. 15-19, (New York), Acoustical Society of America, Nov.
2004.
- 41
-
J. Bensa, Analysis and Synthesis of Piano Sounds using Physical and Signal
Models,
PhD thesis, Université de la Méditérranée, Marseille,
France, 2003,
http://www.lma.cnrs-mrs.fr/ bensa/.
- 42
-
J. Bensa, S. Bilbao, R. Kronland-Martinet, and J. O. Smith, ``From the physics
of piano strings to digital waveguides,'' in Proceedings of the 2002 International Computer Music Conference, Sweden, 2002.
- 43
-
J. Bensa, R. Kronland-Martinet, S. Bilbao, and J. O. Smith, ``A
power-normalized non-linear lossy piano hammer,'' in Proceedings of the Stockholm
Musical Acoustics Conference (SMAC-03),
http://www.speech.kth.se/smac03/, (Stockholm), pp. 365-368, Royal Swedish
Academy of Music, Aug. 2003.
- 44
-
J. Bensa, S. Bilbao, R. Kronland-Martinet, and J. O. Smith, ``A power
normalized non-linear lossy piano hammer,'' in Proceedings of the Stockholm Musical
Acoustics Conference (SMAC-03),
http://www.speech.kth.se/smac03/, 2003.
- 45
-
J. Bensa, S. Bilbao, R. Kronland-Martinet, and J. O. Smith, ``The simulation of
piano string vibration: from physical models to finite difference schemes and
digital waveguides,'' Journal of the Acoustical Society of America,
vol. 114(2), pp. 1095-1107, 2003.
- 46
-
J. Bensa, S. Bilbao, R. Kronland-Martinet, J. O. Smith, and T. Voinier,
``Computational modeling of stiff piano strings using digital waveguides
and finite differences,'' Acustica--Acta Acustica, vol. 91(2),
pp. 289-298, 2005.
- 47
-
L. L. Beranek, Acoustics,
http://asa.aip.org/publications.html: American Institute of Physics, for the
Acoustical Society of America, 1986,
1st ed. 1954.
- 48
-
L. Beranek, Concert Halls and Opera Houses: Music, Acoustics, and
Architecture,
Berlin: Springer-Verlag, 2004.
- 49
-
E. J. Berdahl and J. O. Smith, ``Transfer function measurement toolbox,'' June
2007,
http://ccrma.stanford.edu/realsimple/imp_meas/.
- 50
-
D. P. Berners, Acoustics and Signal Processing Techniques for Physical
Modeling of Brass Instruments,
PhD thesis, Elec. Engineering Dept., Stanford University (CCRMA), June
1999,
http://ccrma.stanford.edu/~dpberner/.
- 51
-
D. P. Berners and J. O. Smith, ``On the use of Schrodinger's equation in the
analytic determination of horn reflectance,'' in Proceedings of the 1994 International Computer Music Conference, Århus, pp. 419-422, Computer Music
Association, 1994.
- 52
-
D. P. Berners and J. O. Smith, ``Super-spherical wave simulation in flaring
horns,'' in Proceedings of the 1995 International Computer Music Conference, Banff,
pp. 112-113, Computer Music Association, 1995.
- 53
-
R. T. Beyer, Nonlinear Acoustics,
American Institute of Physics, for the Acoustical Society of America,
1997 (orig. 1974),
http:.
- 54
-
S. Bilbao, Wave and Scattering Methods for the Numerical Integration of
Partial Differential Equations,
PhD thesis, Stanford University, June 2001,
http://ccrma.stanford.edu/ bilbao/.
- 55
-
S. Bilbao, Wave and Scattering Methods for Numerical Simulation,
New York: John Wiley and Sons, Inc., July 2004.
- 56
-
S. Bilbao, J. O. Smith, J. Bensa, and R. Kronland-Martinet, ``A
power-normalized wave digital piano hammer,'' Journal of the Acoustical Society of America, Program of the 144th Meeting, Cancun, Mexico, Dec. 2-6,
Dec. 2002,
see paper on the conference CD-ROM.
- 57
-
J. Blauert, Spatial Hearing. The Psychophysics of Human Sound
Localization,
Cambridge, MA, USA: MIT Press, 1997.
- 58
-
B. Blesser, ``Interdisciplinary synthesis of reverberation viewpoint,'' Journal of the Audio Engineering Society, vol. 49, pp. 867-903, Oct. 2001.
- 59
-
H. Bode, ``History of electronic sound modification,'' Journal of the Audio Engineering Society, vol. 32, pp. 730-739, Oct. 1984.
- 60
-
G. Borin, G. De Poli, and A. Sarti, ``A modular approach to
excitator-resonator interaction in physical models synthesis,'' in Proceedings of the 1989 International Computer Music Conference, Ohio, pp. 46-50, Computer Music
Association, 1989.
- 61
-
G. Borin, G. De Poli, and A. Sarti, ``Musical signal synthesis,'' in Musical Signal Processing (C. Roads, S. T. Pope, A. Piccialli, and G. De
Poli, eds.), pp. 5-30, Netherlands: Swets and Zietlinger, 1997.
- 62
-
J. Borish, Electronic Simulation of Auditorium Acoustics,
PhD thesis, Elec. Engineering Dept., Stanford University (CCRMA), 1984,
CCRMA Technical Report
STAN-M-18,
http://ccrma.stanford.edu/STANM/STANM/stanm18/.
- 63
-
M. Bosi and R. E. Goldberg, Introduction to Digital Audio Coding and
Standards,
Boston: Kluwer Academic Publishers, 2003.
- 64
-
X. Boutillon, ``Model for piano hammers: Experimental determination and digital
simulation,'' Journal of the Acoustical Society of America, vol. 83,
pp. 746-754, Feb. 1988.
- 65
-
Boyce and Deprima, Elementary Differential Equations and Boundary Value
Problems,
New York: John Wiley and Sons, Inc., 1986,
includes a nice mathematical discussion of the Laplace
transform.
- 66
-
S. Boyd and L. Vandenberghe, Convex Optimization,
Cambridge University Press, Feb. 2004,
http://www.stanford.edu/~boyd/cvxbook.html.
- 67
-
C. B. Boyer, A History of Mathematics,
Princeton University Press, 1968.
- 68
-
K. Bradley, M.-H. Cheng, and V. L. Stonick, ``Automated analysis and
computationally efficient synthesis of acoustic guitar strings and body,'' in
Proceedings of the IEEE Workshop on Applications of Signal Processing to Audio and Acoustics,
New Paltz, NY, (New York), pp. 238-241, IEEE Press, Oct. 1995,
Session 9a, paper 7, 4 pages.
- 69
-
E. Brandt, ``Hard sync without aliasing,'' in Proceedings of the 2001 International Computer Music Conference, Havana, 2001,
URL =
http://www-2.cs.cmu.edu/~eli/papers/icmc01-hardsync.pdf.
- 70
-
O. Brune, ``Synthesis of a finite two terminal network whose driving point
impedance is a prescribed function of frequency,'' in J. Math. and
Phys., vol. 10, pp. 191-236, 1931.
- 71
-
C. Cadoz, A. Luciani, and J. L. Florens, ``Cordis-anima: A modeling and
simulation system for sound and image synthesis. the general formalism,''
Computer Music Journal, vol. 17, pp. 19-29, Winter 1993.
- 72
-
D. M. Campbell, ``Brass instruments es we know them today,'' in Proceedings of the Stockholm Musical Acoustics Conference (SMAC-03),
http://www.speech.kth.se/smac03/, (Stockholm), pp. 185-188, Royal Swedish
Academy of Music, Aug. 2003.
- 73
-
G. Campos and D. Howard, ``A parallel 3D digital waveguide mesh model with
tetrahedral topology for room acoustic simulation,'' in Proceedings of
the COST G-6 Conference on Digital Audio Effects (DAFx), (Verona, Italy),
pp. 73-78, Dec. 2000,
http://www.dafx.de/.
- 74
-
R. Caussé, J. Kergomard, and X. Lurton, ``Input impedance of brass musical
instruments--comparison between experiment and numerical models,''
Journal of the Acoustical Society of America, vol. 75, pp. 241-254, Jan.
1984.
- 75
-
C. Chafe, ``Pulsed noise in self-sustained oscillations of musical
instruments,'' in Proceedings of the International Conference on Acoustics, Speech, and Signal
Processing, Albuquerque, (New York), IEEE Press, 1990,
available as CCRMA Technical Report
STAN-M-65, Music Dept., Stanford University.
- 76
-
A. Chaigne, ``Viscoelastic properties of nylon guitar strings,'' Catgut
Acoustical Society Journal, Series II, vol. 1, pp. 21-27, May 1991.
- 77
-
A. Chaigne, ``On the use of finite differences for musical synthesis.
application to plucked stringed instruments,'' Journal d'Acoustique,
vol. 5, no. 2, pp. 181-211, 1992.
- 78
-
A. Chaigne and A. Askenfelt, ``Numerical simulations of piano strings. I. A
physical model for a struck string using finite difference methods,'' Journal of the Acoustical Society of America, vol. 95, no. 2, pp. 1112-1118, 1994.
- 79
-
A. Chaigne and A. Askenfelt, ``Numerical simulations of piano strings. II.
comparisons with measurements and systematic exploration of some
hammer-string parameters,'' Journal of the Acoustical Society of America,
vol. 95, pp. 1631-1640, Mar. 1994.
- 80
-
A. Chaigne and A. Askenfelt, ``Numerical simulations of piano strings, parts
I and II,'' Journal of the Acoustical Society of America, vol. 95,
pp. 1112-1118, 1631-1640, Feb.-March 1994.
- 81
-
H. Chamberlin, Musical Applications of Microprocessors,
New Jersey: Hayden Book Co., Inc., 1980.
- 82
-
H. Chamberlin, Musical Applications of Microprocessors, Second Edition,
New Jersey: Hayden Books, 1987,
second printing.
- 83
-
J. M. Chowning, ``The simulation of moving sound sources,'' Journal of the Audio Engineering Society, vol. 19, pp. 2-6, 1971.
- 84
-
J. M. Chowning, ``Frequency modulation synthesis of the singing voice,'' in
Current Directions in Computer Music Research (M. V. Mathews and J. R.
Pierce, eds.), pp. 57-63, Cambridge, MA: MIT Press, 1989.
- 85
-
R. V. Churchill, Complex Variables and Applications,
New York: McGraw-Hill, 1960.
- 86
-
P. Cook and G. Scavone, Synthesis ToolKit in C++, Version 4,
http://ccrma.stanford.edu/ccrma/Software/STK/, 2007.
- 87
-
P. R. Cook, Identification of Control Parameters in an Articulatory Vocal
Tract Model, with Applications to the Synthesis of Singing,
PhD thesis, Elec. Engineering Dept., Stanford University (CCRMA), Dec.
1990,
http:
//www.cs.princeton.edu/~prc/.
- 88
-
P. R. Cook, ``Tbone: An interactive waveguide brass instrument synthesis
workbench for the NeXT machine,'' in Proceedings of the 1991 International Computer
Music Conference, Montreal, pp. 297-299, Computer Music Association, 1991.
- 89
-
P. R. Cook, ``A meta-wind-instrument physical model, and a meta-controller for
real time performance control,'' in Proceedings of the 1992 International Computer Music
Conference, San Jose, pp. 273-276, Computer Music Association, 1992.
- 90
-
P. R. Cook, ``Singing voice synthesis: History, current work, and future
directions,'' Computer Music Journal, vol. 20, pp. 38-46, Fall
1996.
- 91
-
P. R. Cook, ``Synthesis toolkit in C++, version 1.0,'' in SIGGRAPH
Proceedings, Assoc. Comp. Mach., May 1996.
- 92
-
P. R. Cook, Real Sound Synthesis for Interactive Applications,
A. K. Peters, L.T.D., 2002.
- 93
-
D. C. Copley and W. J. Strong, ``Stroboscopic sequences of lip vibrations in a
trombone,'' in Proceedings of the International Symposium on Musical Acoustics (ISMA-95),
Dourdan, France, (France), pp. 42-46, Société Français d'Acoustique,
July 1995.
- 94
-
T. J. Cox and P. D'Antonio, ``A brief history of room acoustic diffusers,''
Acoustics Today, pp. 18-25, July 2006.
- 95
-
L. Cremer, The Physics of the Violin,
Cambridge, MA: MIT Press, 1984.
- 96
-
R. Crochiere, L. Rabiner, and R. Shively, ``A novel implementation of digital
phase shifters,'' Bell System Technical Journal, vol. 65,
pp. 1497-1502, Oct. 1975.
- 97
-
R. Crochiere and L. R. Rabiner, Multirate Digital Signal Processing,
Englewood Cliffs, NJ: Prentice-Hall, Inc., 1983.
- 98
-
J. Cullen, J. Gilbert, and D. M. Campbell, ``Brass instruments: Linear
stability analysis and experiments with an artificial mouth,'' Acta
Acustica, vol. 86, pp. 704-724, 2000.
- 99
-
J. l. R. d'Alembert, ``Investigation of the curve formed by a vibrating
string, 1747,'' in Acoustics: Historical and Philosophical Development
(R. B. Lindsay, ed.), pp. 119-123, Stroudsburg: Dowden, Hutchinson & Ross,
1973.
- 100
-
J.-P. Dalmont, J. Gilbert, and S. Ollivier, ``Nonlinear characteristics of
single-reed instruments: Quasistatic volume flow and reed opening
measurements,'' Journal of the Acoustical Society of America, vol. 114,
pp. 2253-2262, Oct. 2003.
- 101
-
J. Dattorro, ``The implementation of recursive digital filters for
high-fidelity audio,'' Journal of the Audio Engineering Society, vol. 36,
pp. 851-878, Nov. 1988,
Comments, ibid. (Letters to the Editor), vol. 37, p. 486 (1989 June);
Comments, ibid. (Letters to the Editor), vol. 38, pp. 149-151 (1990 Mar.).
- 102
-
J. Dattorro, ``Effect design,'' Journal of the Audio Engineering Society, vol. 45,
pp. 660-684, September 1997.
- 103
-
J. Dattorro, ``Effect design: Part 3 oscillators: Sinusoidal and pseudonoise,''
Journal of the Audio Engineering Society, vol. 50, no. 3, pp. 115-146, 2002.
- 104
-
J. R. Deller Jr., J. G. Proakis, and J. H. Hansen, Discrete-Time
Processing of Speech Signals,
New York: Macmillan, 1993.
- 105
-
J. R. Deller Jr., J. H. L. Hansen, and J. G. Proakis, Discrete-Time
Processing of Speech Signals,
New York: John Wiley and Sons, Inc., Mar. 2001.
- 106
-
P. Denbigh, System Analysis and Signal Processing,
Reading MA: Addison-Wesley, 1998,
A fair amount of MATLAB code... isn't cheap: $81.95 (as of 4/01),
but it might be a good book for those rusty with Laplace transform analysis.
- 107
-
P. Depalle and S. Tassart, ``State space sound synthesis and a State space
synthesiser builder,'' in Proceedings of the 1995 International Computer Music Conference,
Banff, pp. 88-95, Computer Music Association, 1995,
http://mediatheque.ircam.fr/articles/textes/Depalle95a/.
- 108
-
G. Derveaux, A. Chaigne, P. Joly, and E. Bécache, ``Time-domain simulation of
a guitar: Model and method,'' Journal of the Acoustical Society of America,
vol. 114, pp. 3368-3383, Dec. 2003.
- 109
-
C. A. Desoer and E. S. Kuh, Basic Circuit Theory,
New York: McGraw-Hill, 1969.
- 110
-
P. H. Dietz, ``Simulation of trumpet tones via physical modeling,'' Master's
thesis, Elec. and Comp. Engineering Dept., Carnegie Mellon University, Dec 1988,
available as CMU Report no. LASIP-89-07, Aug. 1989.
- 111
-
P. H. Dietz and N. Amir, ``Synthesis of trumpet tones by physical modeling,''
in Proceedings of the International Symposium on Musical Acoustics (ISMA-95), Dourdan, France,
(France), pp. 471-477, Société Français d'Acoustique, July 1995.
- 112
-
P. A. M. Dirac, The Principles of Quantum Mechanics, Fourth Edition,
New York: Oxford University Press, 1958-2001.
- 113
-
C. Dodge and T. A. Jerse, Computer Music,
New York: Schirmer, 1985.
- 114
-
B. Doval and X. Rodet, ``Fundamental frequency estimation using a new harmonic
matching method,'' in Proceedings of the 1991 International Computer Music Conference,
Montreal, pp. 555-558, Computer Music Association, 1991.
- 115
-
DSP Committee, ed., Programs for Digital Signal Processing,
New York: IEEE Press, 1979.
- 116
-
DSP Committee, ed., Programs for Digital Signal Processing II,
New York: IEEE Press, 1979.
- 117
-
E. Ducasse, ``An alternative to the traveling-wave approach for use in two-port
descriptions of acoustic bores,'' Journal of the Acoustical Society of America,
vol. 112, pp. 3031-3041, Dec. 2002.
- 118
-
H. W. Dudley, ``Remaking speech,'' Journal of the Acoustical Society of America,
vol. 11, pp. 1969-1977, 1939.
- 119
-
H. W. Dudley, ``The vocoder,'' Bell Labs Rec., vol. 18, pp. 122-126,
1939,
Reprinted in [414, pp. 347-351].
- 120
-
H. K. Dunn, ``The calculation of vowel resonances, and an electrical vocal
tract,'' Journal of the Acoustical Society of America, vol. 22, pp. 740-753,
Nov. 1950,
Reprinted in [414, pp. 31-44].
- 121
-
W. C. Elmore and M. A. Heald, Physics of Waves,
New York: Dover, 1969.
- 122
-
C. Erkut and M. Karjalainen, ``Finite Difference Method vs. Digital Waveguide
Method in String Instrument Modeling and Synthesis,'' in International Symposium on Musical Acoustics, (Mexico City, Mexico), December 2002.
- 123
-
C. Erkut and M. Karjalainen, ``Finite difference method vs. digital waveguide
method in string instrument modeling and synthesis,'' in Proceedings of the International Symposium on Musical Acoustics (ISMA-02), Mexico City, 2002,
http://www.acoustics.hut.fi/~cerkut/publications.html.
- 124
-
C. Erkut and M. Karjalainen, ``Virtual strings based on a 1-D FDTD
waveguide model,'' Proceedings of the Audio Engineering Society 22nd International Conference,
Espoo, Finland, pp. 317-323, June 15-17, 2002,
http://www.acoustics.hut.fi/~cerkut/publications.html.
- 125
-
C. Erkut, Aspects in Analysis and Model-Based Sound Synthesis of Plucked
String Instruments,
Doctoral thesis, Helsinki University of Technology, Espoo, Finland,
November 2002,
overview
http://lib.hut.fi/Diss/2002/isbn9512261901/.
- 126
-
P. A. A. Esquef, V. Välimäki, and M. Karjalainen, ``Restoration and
enhancement of solo guitar recordings based on sound source modeling,'' Journal of the Audio Engineering Society, vol. 2002, no. 4, pp. 227-236,
2002.
- 127
-
G. Essl, Physical Wave Propagation Modeling for Real-Time Synthesis of
Natural Sounds,
PhD thesis, Computer Science Dept., Princeton University, Nov. 2002,
http://ncstrl.cs.princeton.edu/expand.php?id=TR-659-02.
- 128
-
G. Essl, Jan 13, 2004,
http://arxiv.org/abs/physics/0401065v1.
- 129
-
V. E. Eveleigh, Introduction to Control System Design,
New York: McGraw-Hill, 1972.
- 130
-
G. Fant, ``The acoustics of speech,'' in Report of the Third International Congress on Acoustics, pp. 188-201, 1959,
Reprinted in [414, pp. 17-30].
- 131
-
G. Fant, Acoustic Theory of Speech Production,
The Hague: Mouton, 1960.
- 132
-
G. Fant, ``The LF-model revisited. transformations and frequency domain
analysis,'' STL-QPSR, vol. 2-3, pp. 119-156, 1995.
- 133
-
C. W. Farrow, ``A continuously variable digital delay element,'' in Proceedings of the IEEE Conference on Circuits and Systems, Espoo, Finland, vol. 3,
pp. 2641-2645, June 7-9 1988.
- 134
-
A. Fettweis, ``Digital filters related to classical structures,'' AEU:
Archive für Elektronik und Übertragungstechnik, vol. 25,
pp. 79-89, Feb 1971,
see also U.S. Patent 3,967,099, 1976, now expired.
- 135
-
A. Fettweis, ``Some principles of designing digital filters imitating classical
filter structures,'' IEEE Transactions on Circuit Theory, vol. 18,
pp. 314-316, Mar. 1971.
- 136
-
A. Fettweis, ``Wave digital filters: Theory and practice,'' Proceedings of the IEEE,
vol. 74, pp. 270-327, Feb. 1986.
- 137
-
R. P. Feynman, Feynman Lectures On Physics (3 Volume Set),
Reading MA: Addison-Wesley, 1970.
- 138
-
J. L. Flanagan, Speech Analysis, Synthesis, and Perception,
New York: Springer Verlag, 1972.
- 139
-
J. L. Flanagan, ``Voices of men and machines,'' Journal of the Acoustical Society of America, vol. 51, pp. 1375-1387, Mar. 1972,
Reprinted in [414, pp. 4-16].
- 140
-
J. L. Flanagan and R. M. Golden, ``Phase vocoder,'' Bell System Technical Journal, vol. 45, pp. 1493-1509, Nov. 1966,
Reprinted in [414, pp. 388-404].
- 141
-
J. L. Flanagan and K. Ishizaka, ``Automatic generation of voiceless excitation
in a vocal cord-vocal tract speech synthesizer,'' IEEE Transactions on Acoustics, Speech, Signal Processing, vol. 24, pp. 163-170, Apr. 1976.
- 142
-
J. L. Flanagan and L. R. Rabiner, eds., Speech Synthesis,
Stroudsburg, Penn.: Dowden, Hutchinson, and Ross, Inc., 1973.
- 143
-
N. H. Fletcher and T. D. Rossing, The Physics of Musical Instruments,
New York: Springer Verlag, 1991,
See [144] for a later edition.
- 144
-
N. H. Fletcher and T. D. Rossing, The Physics of Musical Instruments, 2nd
Edition,
New York: Springer Verlag, 1998.
- 145
-
J.-L. Florens and C. Cadoz, ``The physical model: Modeling and simulating the
instrumental universe,'' in Representations of Musical Signals (G. De
Poli, A. Picialli, and C. Roads, eds.), pp. 227-268, Cambridge, MA: MIT
Press, 1991.
- 146
-
F. Fontana and D. Rocchesso, ``A new formulation of the 2D-waveguide mesh for
percussion instruments,'' in Proceedings of the XI Colloquiun on Musical
Informatics, (Bologna, Italy), pp. 27-30, Nov. 1995.
- 147
-
F. Fontana and D. Rocchesso, ``Physical modeling of membranes for percussive
instruments,'' Acustica United with Acta Acustica, vol. 84,
pp. 529-542, May/June 1998.
- 148
-
F. Fontana and D. Rocchesso, ``Online correction of dispersion error in 2D
waveguide meshes,'' in Proceedings of the International Computer Music
Conference, (Berlin, Germany), pp. 78-81, Sept. 2000.
- 149
-
B. Fornberg, A Practical Guide to Pseudo-Spectral Methods,
Cambridge University Press, 1998.
- 150
-
S. Foster, ``Impulse response measurements using golay codes,'' Proc. IEEE ICASSP-86, pp. 929-932, 1986.
- 151
-
W. Frank and A. Lacroix, ``Improved vocal tract models for speech synthesis,''
Proceedings of the International Conference on Acoustics, Speech, and Signal Processing, Tokyo,
vol. 3, pp. 2011-2014, 1986.
- 152
-
G. F. Franklin, J. D. Powell, and M. L. Workman, Digital Control of
Dynamic Systems, Third Edition,
Englewood Cliffs, NJ: Prentice-Hall, 1998.
- 153
-
D. K. Frederick and A. B. Carlson, Linear Systems in Communication and
Control,
New York: John Wiley and Sons, Inc., 1971.
- 154
-
F. G. Friedlander, ``On the oscillations of the bowed string,'' Proceedings of the Cambridge Philosophy Society, vol. 49, pp. 516-530, 1953.
- 155
-
W. G. Gardner, ``The virtual acoustic room,'' Master's thesis, MIT, 1992,
http://www.harmony-central.com/Computer/Programming/virtual-acoustic-room.ps.gz.
- 156
-
W. G. Gardner, ``Reverberation algorithms,'' in Applications of Digital
Signal Processing to Audio and Acoustics (M. Kahrs and K. Brandenburg,
eds.), pp. 85-131, Boston/Dordrecht/London: Kluwer Academic Publishers,
1998,
see http://www.wkap.nl/book.htm/0-7923-8130-0.
- 157
-
B. Gazengel and J. Gilbert, ``From the measured input impedance to the
synthesized pressure signal: Application to the saxophone,'' in Proceedings of the International Symposium on Musical Acoustics (ISMA-95), Dourdan, France, (France),
pp. 484-489, Société Français d'Acoustique, July 1995.
- 158
-
B. Gazengel, J. Gilbert, and N. Amir, ``Time domain simulation of single-reed
wind instruments. from the measured input impedance to the synthesis signal.
where are the traps?,'' Acta Acustica, vol. 3, pp. 445-472, Oct.
1995.
- 159
-
M. A. Gerzon, ``Synthetic stereo reverberation, parts i and ii,'' Studio
Sound, vol. 13(I), 14(II), pp. 632-635(I), 24-28(II), 1971(I),1972(II).
- 160
-
M. A. Gerzon, ``Unitary (energy preserving) multichannel networks with
feedbacks,'' Electronics Letters, vol. 12, no. 11, pp. 278-279, 1976.
- 161
-
M. A. Gerzon, ``Optimum reproduction matrices for multispeaker stereo,'' Journal of the Audio Engineering Society, vol. 40, pp. 571-589, Jul/Aug 1992.
- 162
-
J. Gilbert and J. F. Petiot, ``Brass instruments: Some theoretical and
experimental results,'' in Proceedings of the International Symposium on Musical Acoustics
(ISMA-97), Edinburgh, Scotland, pp. 391-400, 1997.
- 163
-
J. Gilbert, J. Kergomard, and J. D. Polack, ``On the reflection functions
associated with discontinuities in conical bores,'' Journal of the Acoustical Society of America, vol. 87, pp. 1773-1780, Apr. 1990.
- 164
-
J. Gilbert, S. Ponthus, and J. F. Petiot, ``Artificial buzzing lips and brass
instruments: Experimental results,'' Journal of the Acoustical Society of
America, vol. 104, pp. 1627-1632, 1998.
- 165
-
N. Giordano and J. P. Millis, ``Hysteretic behavior of piano hammers,'' in Proceedings of the International Symposium on Musical Acoustics (ISMA-01), Perugia, Umbria, Italy,
pp. 237-240, 2001.
- 166
-
B. R. Glasberg and B. C. J. Moore, ``A model of loudness applicable to
time-varying sounds,'' Journal of the Audio Engineering Society, vol. 50,
pp. 331-342, May 2002.
- 167
-
A. A. Goldstein, Constructive Real Analysis,
New York: Harper and Row, 1967.
- 168
-
G. H. Golub and C. F. Van Loan, Matrix Computations, 2nd Edition,
Baltimore: The Johns Hopkins University Press, 1989.
- 169
-
G. C. Goodwin and R. L. Payne, Dynamic System Identification,
New York: Academic Press, 1977.
- 170
-
J. W. Gordon and J. O. Smith, ``A sine generation algorithm for VLSI
applications,'' in Proceedings of the 1985 International Computer Music Conference,
Vancouver, Computer Music Association, 1985.
- 171
-
A. Gräf, ``Interfacing Pure Data with Faust,'' in Proceedings of the 5th International Linux Audio Conference (LAC2007),
http://www.kgw.tu-berlin.de/~lac2007/proceedings.shtml, 2007,
http:
//www.kgw.tu-berlin.de/~lac2007/papers/lac07_graef.pdf.
- 172
-
K. F. Graff, Wave Motion in Elastic Solids,
New York: Dover, 1991 (1975 version).
- 173
-
R. A. Granger, Fluid Mechanics,
New York: Dover, 1995.
- 174
-
A. H. Gray, ``Passive cascaded lattice digital filters,'' IEEE Transactions on Acoustics, Speech, Signal Processing, vol. ASSP-27, pp. 337-344, May 1980.
- 175
-
A. H. Gray and J. D. Markel, ``Digital lattice and ladder filter synthesis,''
in Selected Papers in Digital Signal Processing (Digital Signal
Processing Committee, ed.), IEEE Press, 1975.
- 176
-
A. H. Gray and J. D. Markel, ``A normalized digital filter structure,'' IEEE Transactions on Acoustics, Speech, Signal Processing, vol. ASSP-23,
pp. 268-277, June 1975.
- 177
-
K. Guettler, ``The bowed string computer simulated -- some characteristic
features of the attack,'' Catgut Acoustical Society Journal, Series II,
vol. 2, pp. 22-26, Nov 1992.
- 178
-
K. Guettler and A. Askenfelt, ``On the kinetics of spiccato bowing,'' in Proceedings of the International Symposium on Musical Acoustics (ISMA-97), Edinburgh, Scotland,
pp. 101-106, Aug. 1997.
- 179
-
K. Guettler and A. Askenfelt, ``On the kinematics of spiccato and ricochet
bowing,'' Catgut Acoustical Society Journal, Series II, vol. 3,
pp. 9-15, Nov. 1998.
- 180
-
M. Gutknecht, J. O. Smith, and L. N. Trefethen, ``The Caratheodory-Fejer
(CF) method for recursive digital filter design,'' IEEE Transactions on Acoustics, Speech, Signal Processing, vol. 31, no. 6, pp. 1417-1426, 1983.
- 181
-
D. E. Hall and A. Askenfelt, ``Piano string excitation v: Spectra for real
hammers and strings,'' Journal of the Acoustical Society of America, vol. 83,
pp. 1627-1638, Apr. 1988.
- 182
-
D. Halliday and R. Resnick, Fundamentals of Physics,
New York: John Wiley and Sons, Inc., 1970.
- 183
-
D. Halliday, R. Resnick, and J. Walker, Extended, Fundamentals of Physics,
6th Edition,
New York: John Wiley and Sons, Inc., 2000.
- 184
-
R. Hanson, ``Measurements of nonlinear effects in a driven vibrating wire,''
Journal of the Acoustical Society of America, vol. 96, pp. 1549-1556, Sept.
1994.
- 185
-
A. Härmä, M. Karjalainen, L. Savioja, V. Välimäki, U. K. Laine, and
J. Huopaniemi, ``Frequency-warped signal processing for audio applications,''
Journal of the Audio Engineering Society, vol. 48, pp. 1011-1031, Nov. 2000.
- 186
-
F. J. Harris, ``Performance and design considerations of the Farrow filter
when used for arbitrary resampling of sampled time series,'' in Proc. 31st Asilomar Conference on Signals, Systems, and Computers, vol. 2,
pp. 1745-1749, Nov. 1997.
- 187
-
W. Hartmann, Signals, Sound, and Sensation,
New York: AIP Press, 1997,
647 pp., 221 illustrations, hardcover.
- 188
-
T. Hélie and M. Hasler, ``Representation of the weakly nonlinear propagation
in air-filled pipes with Volterra series,'' in 11th InternationalIEEE Workshop
on Nonlinear Dynamics of Electronic Systems, 2003.
- 189
-
T. Hélie and D. Matignon, ``Numerical simulation of acoustic waveguides for
Webster-Lokshin model using diffusive representations,'' in Sixth
InternationalConference onMath. and Numer. Aspects of Wave Prop. Phenomena,
Jyväskylä, Finland, 2003.
- 190
-
T. Hélie and X. Rodet, ``Radiation of a pulsating portion of a sphere:
Application to radiation of horns,'' Acustica--Acta Acustica,
vol. 89, no. 4, pp. 565-577, 2003.
- 191
-
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.
- 192
-
H. Hermansky, ``Perceptual linear predictive (PLP) analysis of speech,'' Journal of the Acoustical Society of America, vol. 87, pp. 1738-1752, Apr. 1990.
- 193
-
W. J. Hess, Algorithms and Devices for Pitch Determination of
Speech-Signals,
Berlin: Springer-Verlag, 1983.
- 194
-
F. B. Hildebrand, Introduction to Numerical Analysis,
New York: Dover, 1974,
Second edition.
- 195
-
L. Hiller and P. Ruiz, ``Synthesizing musical sounds by solving the wave
equation for vibrating objects. Part I.,'' Journal of the Audio Engineering Society, vol. 19, pp. 462-470, June 1971,
Part II: vol. 19, no. 7, pp. 542-551, July/Aug. 1971.
- 196
-
S. Hirschman, Digital Waveguide Modelling and Simulation of Reed
Woodwind Instruments,
Engineer's thesis, Elec. Engineering Dept., Stanford University (CCRMA),
May 1991,
available as CCRMA Technical Report Stan-M-72, Music Dept., Stanford
University, July 1991.
- 197
-
S. Hirschman, P. R. Cook, and J. O. Smith, ``Digital waveguide modelling of
reed woodwinds: An interactive development environment on the NeXT
computer,'' in Proceedings of the 1991 International Computer Music Conference, Montreal,
pp. 300-303, Computer Music Association, 1991,
available in ``CCRMA Papers on Physical Modeling from the 1991 International Computer Music Conference,'' Department of Music Technical Report
STAN-M-73, Stanford University, October 1991.
- 198
-
A. Hirschberg, ``A quasi-stationary model of air flow in the reed channel of
single-reed woodwind instruments,'' Acustica, vol. 70, pp. 146-154,
1990.
- 199
-
A. Hirschberg, ``Aero-acoustics of wind instruments,'' in Hirschberg et al. [201], pp. 291-361.
- 200
-
A. Hirschberg, J. Kergomard, and G. Weinreich, eds., Mechanics of Musical
Instruments,
Berlin: Springer-Verlag, 1995.
- 201
-
A. Hirschberg, J. Kergomard, and G. Weinreich, eds., Mechanics of Musical
Instruments,
Berlin: Springer-Verlag, 1995.
- 202
-
A. Hirschberg, J. G. R. Msallam, , and A. P. Wijnands, ``Shock waves in
trombones,'' Journal of the Acoustical Society of America, vol. 99,
pp. 1754-1758, Mar. 1996.
- 203
-
A. Horner, J. Beauchamp, and L. Haken, ``Methods for multiple wavetable
synthesis of musical instrument tones,'' Journal of the Audio Engineering Society, vol. 41, pp. 336-356, May 1993.
- 204
-
P. Huang and J. O. Smith, ``Loudness-based display and analysis applied to
artificial reverberation,'' in Proceedings of the 2004 International Computer Music
Conference, Miami, Florida, Computer Music Association, Nov. 2004.
- 205
-
P. Huang, S. Serafin, and J. O. Smith, ``Modeling high-frequency modes of
complex resonators using a waveguide mesh,'' in Proceedings of the International Conference on Digital Audio Effects (DAFx-00), Verona, Italy, Dec. 2000,
http://www.dafx.de/.
- 206
-
P. Huang, S. Serafin, and J. O. Smith, ``A waveguide mesh model of
high-frequency violin body resonances,'' in Proceedings of the 2000 International Computer Music Conference, Berlin, Aug. 2000.
- 207
-
P. Huang, S. Serafin, and J. O. Smith, ``A waveguide mesh model of
high-frequency violin body resonances,'' in Proceedings of the
International Computer Music Conference, (Berlin, Germany), Sept. 2000.
- 208
-
J. Huopeniemi and J. O. Smith, ``Spectral and time-domain processing and the
choice of modeling error criteria for binaural digital filters,'' in AES
16th International Conference on Spatial Sound Reproduction, Rovaniemi, Finland,
pp. 301-312, Apr. 1999.
- 209
-
E. Incerti and C. Cadoz, ``Topology, geometry, matter of vibrating structures
simulated with cordis-anima, sound synthesis methods,'' in Proceedings of the 1995
International Computer Music Conference, Banff, pp. 96-103, Computer Music
Association, 1995.
- 210
-
K. Ishizaka and J. L. Flanagan, ``Synthesis of voiced sounds from a two-