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[7] Paul S. Binaural recording technology: a historical review University of Technology, 2014.
and possible future developments[J]. Acta Acustica united [25] Fayek H, van der Maaten L, Romigh G, et al. On data-
with Acustica, 2009, 95(5): 767–788. driven approaches to head-related-transfer function per-
[8] Hertz B F. 100 Years with Stereo—the begin- sonalization[C]//Audio Engineering Society Convention
ning[C]//Audio Engineering Society Convention 68. Au- 143. Audio Engineering Society, 2017.
dio Engineering Society, 1981. [26] Zhang W, Samarasinghe P N, Chen H, et al. Surround by
[9] Harvey F, Sivian L J. Binaural telephone system: US, sound: a review of spatial audio recording and reproduc-
1624486[P]. 1927-04-12. tion[J]. Appl. Acoust., 2017, 7(5): 532.
[10] Doolittle F M. Radiotelephony: US, 1513973[P]. 1924-11- [27] Queiroz M, de Sousa G H M. Efficient binaural render-
04. ing of moving sound sources using HRTF interpolation[J].
[11] Bartlett J W. Method and means for the ventriloquial Journal of New Music Research, 2011, 40(3): 239–252.
production of sound: US, 1855149[P]. 1932-04-19. [28] Freeland F P, Biscainho L W P, Diniz P S R. Efficient
[12] Hammer K, Snow W. Binaural transmission system at HRTF interpolation in 3D moving sound[C]//Audio En-
academy of music in philadelphia[R]. Memorandum MM- gineering Society Conference: 22nd International Confer-
3950, Bell Laboratories, 1932. ence: Virtual, Synthetic, and Entertainment Audio. Au-
[13] Vorländer M. Past, present and future of dummy heads[C]. dio Engineering Society, 2002.
Proceedings of the Acustica, Guimarães, Portugal, 2004: [29] Andreopoulou A, Begault D R, Katz B F G. Inter-
13–17. laboratory round robin HRTF measurement compari-
[14] Garas J. Adaptive 3D sound systems[M]. Dordrecht, son[J]. IEEE Journal of Selected Topics in Signal Pro-
Netherlands: Kluwer Academic, 2000. cessing, 2015, 9(5): 895–906.
[15] Goodwin M M, Jot J M. Binaural 3-D audio rendering [30] Kistler D J, Wightman F L. A model of head-related
based on spatial audio scene coding[C]//Audio Engineer- transfer functions based on principal components analy-
ing Society Convention 123. Audio Engineering Society, sis and minimum-phase reconstruction[J]. J. Acoust. Soc.
2007. Am., 1992, 91(3): 1637–1647.
[16] Breebaart J, Schuijers E. Phantom materialization: a [31] Li J, Zhang J, Sakamoto S, et al. An efficient
novel method to enhance stereo audio reproduction on finite-impulse-response filter model of head-related im-
headphones[J]. IEEE Transactions on Audio Speech & pulse response[C]//Proceedings of Meetings on Acoustics
Language Processing, 2008, 16(8): 1503–1511. ICA2013. ASA, 2013, 19(1): 050173.
[17] Sunder K, He J, Tan E L, et al. Natural sound render- [32] Begault D R, Trejo L J. 3-D sound for virtual reality and
ing for headphones: integration of signal processing tech- multimedia[M]. US: Academic Press, 2000.
niques[J]. IEEE Signal Processing Magazine, 2015, 32(2): [33] Zahorik P, Brungart D S, Bronkhorst A W. Auditory
100–113. distance perception in humans: a summary of past and
[18] Gardner W G, Martin K D. HRTF measurements of a KE- present research[J]. Acta Acustica united with Acustica,
MAR[J]. J. Acoust. Soc. Am., 1995, 97(6): 3907–3908. 2005, 91(3): 409–420.
[19] Algazi V R, Duda R O, Thompson D M, et al. The cipic [34] Karapetyan A, Fleischmann F, Plogsties J. Elevation con-
HRTF database[C]//Applications of Signal Processing to trol in binaural rendering[C]//Audio Engineering Society
Audio and Acoustics, 2001 IEEE Workshop on the. IEEE, Convention 140. Audio Engineering Society, 2016.
2001: 99–102. [35] Valimaki V, Parker J D, Savioja L, et al. Fifty years of ar-
[20] Zotkin D N, Duraiswami R, Grassi E, et al. Fast head- tificial reverberation[J]. IEEE Trans. Audio Speech Lang.
related transfer function measurement via reciprocity[J]. Process., 2012, 20(5): 1421–1448.
J. Acoust. Soc. Am., 2006, 120(4): 2202–2215. [36] Schroeder M R. Natural sounding artificial reverbera-
[21] Enzner G. 3D-continuous-azimuth acquisition of head- tion[J]. J. Audio Eng. Soc., 1962, 10(3): 219–223.
related impulse responses using multi-channel adaptive [37] Moorer J A. About this reverberation business[J]. Com-
filtering[C]//Applications of Signal Processing to Audio puter music journal, 1979, 3(2): 13–28.
and Acoustics, 2009. WASPAA’09. IEEE Workshop on. [38] Gerzon M A. Unitary (energy-preserving) multichan-
IEEE, 2009: 325–328. nel networks with feedback[J]. Electronics Letters, 1976,
[22] Nishino T, Inoue N, Takeda K, et al. Estimation of HRTFs 12(11): 278–279.
on the horizontal plane using physical features[J]. Appl. [39] Jot J M, Chaigne A. Digital delay networks for design-
Acoust., 2007, 68(8): 897–908. ing artificial reverberators[C]//Audio Engineering Society
[23] Zotkin D Y N, Hwang J, Duraiswaini R, et al. Convention 90. Audio Engineering Society, 1991.
HRTF personalization using anthropometric measure- [40] Stautner J, Puckette M. Designing multi-channel rever-
ments[C]//Applications of Signal Processing to Audio berators[J]. Computer Music Journal, 1982, 6(1): 52–65.
and Acoustics, 2003 IEEE Workshop on. IEEE, 2003: [41] Rindel J H. Computer simulation techniques for acoustical
157–160. design of rooms[J]. Acoustics Australia, 1995, 23: 81–86.
[24] Holzl J. A global model for HRTF individualization by ad- [42] Murphy D, Stewart R. A hybrid artificial reverberation al-
justment of principal component weights[D]. Graz: Graz gorithm[C]//Audio Engineering Society Convention 122.