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J. Ahrens.
Analytic Methods of Sound Field Synthesis.
Springer, New York, 2012.
ISBN 978-3-642-25743-8.
doi: rm10.1007/978-3-642-25743-8.

L. L. Beranek.
American Institute of Physics, for the Acoustical Society of America,, 1986.
1st ed. 1954.

A. J. Berkhout.
A holographic approach to acoustic control.
Journal of the Audio Engineering Society, 36 (12): 977-995, 1988.

A. J. Berkhout, D. de Vries, and P. Vogel.
Acoustic control by wave field synthesis.
Journal of the Acoustical Society of America, 93 (5): 2764-2778, 1993.
doi: rm10.1121/1.405852.

J. Blauert.
Spatial Hearing. The Psychophysics of Human Sound Localization.
MIT Press, Cambridge, MA, USA, 1997.

T. Cooper, Duane H.; Shiga.
Discrete-matrix multichannel stereo.
J. Audio Eng. Soc, 20 (5): 346-360, 1972.

G. Firtha.
Unified Wave Field Synthesis Framework with Application for Moving Virtual Sources - DRAFT.
Budapest University of Technology and Economics, Hungary, Febuary 7, 2018.
Accessed October 19, 2019 from

H. Fletcher.
Auditory perspective - basic requirements.
Electrical Engineering, 53 (1): 9-11, Jan. 1934.
doi: rm10.1109/EE.1934.6540356.

A. Franck.
Efficient algorithms and structures for fractional delay filtering based on lagrange interpolation.
Journal of the Audio Engineering Society, 56 (12): 1036-1056, Dec. 2008.

A. Franck.
Efficient Algorithms for Arbitrary Sample Rate Conversion with Application to Wave Field Synthesis.
PhD thesis, Technischen Universität Ilmeneau, Nov. 2011.

M. A. Gerzon.
Surround-sound psychoacoustics.
Wireless World, 80: 483-486, Dec. 1974.
available online from The Gerzon Archive at

M. A. Gerzon.
Ambisonics in multichannel broadcasting and video.
Journal of the Audio Engineering Society, 33 (11): 859-871, 1985.

J. W. Goodman.
Introduction to Fourier Optics, 3rd Edition.
Roberts & Company, Englewood, CO, 2005.

S. Kirkup.
The Boundary Element Method in Acoustics, volume 8.
World Scientific Publishing, 01 2007.
ISBN 0953403106.
doi: rm10.1016/S0218-396X(00)00016-9.

D. A. B. Miller.
Huygens's wave propagation principle corrected.
Optics Letters, 16: 1370-2, 1991.

P. M. Morse and K. U. Ingard.
Theoretical Acoustics.
McGraw-Hill, New York, 1968.

H. Nyquist.
Certain topics in telegraph transmission theory.
Transactions of the American Institute of Electrical Engineers, 47 (2): 617-644, April 1928.
doi: rm10.1109/T-AIEE.1928.5055024.

A. D. Pierce.
American Institute of Physics, for the Acoustical Society of America, 1989.

V. Pulkki.
Virtual sound source positioning using vector base amplitude panning.
Journal of the Audio Engineering Society, 45 (6): 456-, June 1997.

V. Pulkki.
Tech. rep. 62. spatial sound generation and perception by amplitude panning techniques.
Technical report, Lab. of Acoustics and Audio Signal Processing, Helsinki University of Technology, 2001.

V. Pulkki, editor.
Parametric Time-Frequency Domain Spatial Audio.
John Wiley and Sons, Inc., New York, 2017.

J. O. Smith.
Introduction to Digital Filters with Audio Applications.˜jos/filters/, Sept. 2007a.
online book.

J. O. Smith.
Mathematics of the Discrete Fourier Transform (DFT), with Audio Applications, Second Edition.˜jos/mdft/, Apr. 2007b.
online book.

J. O. Smith.
Physical Audio Signal Processing.˜jos/pasp/, Dec. 2010.
ISBN 978-0-9745607-2-4.
online book.

J. O. Smith.
Spectral Audio Signal Processing.˜jos/sasp/, Dec. 2011.
ISBN 978-0-9745607-3-1.
online book.

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, volume 2, pages 19.4.1-19.4.2, New York, Mar. 1984. IEEE Press.
expanded tutorial and associated free software available at the Digital Audio Resampling Home Page:˜jos/resample/.

J. O. Smith, S. Serafin, J. Abel, and D. Berners.
Doppler simulation and the leslie.
In Proceedings of the COST-G6 Conference on Digital Audio Effects (DAFx-02), Hamburg, Germany, pages 13-20, September 26 2002.

J. C. Steinberg and W. B. Snow.
Auditory perspective - physical factors.
Electrical Engineering, 13 (2): 12-17, Jan. 1934.
doi: rm10.1002/j.1538-7305.1934.tb00661.x.

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.˜vpv/publications/vesa_phd.html.

H. Wierstorf and S. Spors.
Sound Field Synthesis Toolbox.
In 132nd Convention of the Audio Engineering Society, 2012.

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``A Spatial Sampling Approach to Wave Field Synthesis: PBAP and Huygens Arrays'', by Julius O. Smith III, Published 2019-11-18:
Copyright © 2020-05-15 by Julius O. Smith III
Center for Computer Research in Music and Acoustics (CCRMA),   Stanford University