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第 37 卷 第 5 期              李军锋等: 基于听觉感知特性的双耳音频处理技术                                           715


                 Audio Engineering Society, 2007.                  Soc. Am., 1989, 85(2): 868–878.
             [43] 徐华兴, 夏日升, 李军锋, 等. 一种基于物理特性和感知特                [58] Xia R, Li J, Xu C, et al. A sound image externaliza-
                 性的混响模拟方法 [J]. 中国科学: 信息科学, 2015, 45(6):            tion approach for headphone reproduction by simulating
                 817–826.                                          binaural room impulse responses[J]. Chinese Journal of
                 Xu Huaxing, Xia Risheng, Li Junfeng, et al. A hybrid  Electronics, 2014, 23(3): 527–532.
                 physically-and perceptually-based approach for reverber-  [59] Bauer B B. Stereophonic earphones and binaural loud-
                 ation simulation[J]. Scientia Sinica Informationis, 2015,  speakers[J]. J. Audio Eng. Soc., 1961, 9(2): 148–151.
                 45(6): 817–826.                                [60] Atal B S, Schroeder M R. Apparent sound source trans-
             [44] Xia R, Li J, Primavera A, et al. A hybrid approach for  lator: US, 3236949[P]. 1966-02-22.
                 reverberation simulation[J]. IEICE Transactions on Fun-  [61] Bauck J, Cooper D H. Generalized transaural stereo and
                 damentals of Electronics, Communications and Computer  applications[J]. J. Audio Eng. Soc., 1996, 44(9): 683–705.
                 Sciences, 2015, 98(10): 2101–2108.             [62] Kirkeby O, Nelson P A, Hamada H, et al. Fast decon-
             [45] Larcher V, Jot J M, Vandernoot G. Equalization meth-  volution of multichannel systems using regularization[J].
                 ods in binaural technology[C]//Audio Engineering Society  IEEE Trans. Audio Speech Lang. Process., 1998, 6(2):
                 Convention 105. Audio Engineering Society, 1998.  189–194.
             [46] Kulkarni A, Colburn H S. Variability in the characteriza-  [63] Liew Y H, Yang J, Tan S E, et al. Power improvement
                 tion of the headphone transfer-function[J]. J. Acoust. Soc.  in crosstalk cancellation using psychoacoustic frequency
                 Am., 2000, 107(2): 1071–1074.                     masking[C]//Audio Engineering Society Convention 109.
             [47] Sunder K, Tan E L, Gan W S. Individualization of bin-  Audio Engineering Society, 2000.
                 aural synthesis using frontal projection headphones[J]. J.  [64] Choueiri E Y. Optimal crosstalk cancellation for binaural
                 Audio Eng. Soc., 2013, 61(12): 989–1000.          audio with two loudspeakers[D]. New Jersey: Princeton
             [48] Härmä A, Karjalainen M, Savioja L, et al. Frequency-  University, 2008: 28.
                 warped signal processing for audio applications[J]. J. Au-  [65] Kirkeby O, Rubak P, Farina A. Analysis of ill-
                 dio Eng. Soc., 2000, 48(11): 1011–1031.           conditioning  of  multi-channel  deconvolution  prob-
             [49] Karjalainen M, Paatero T. Equalization of loudspeaker  lems[C]//Applications of signal processing to Audio and
                 and room responses using Kautz filters:  direct least  Acoustics, 1999 IEEE workshop on. IEEE, 1999: 155–158.
                 squares design[J]. EURASIP Journal on Applied Signal  [66] Masiero B, Vorlander M. A framework for the calculation
                 Processing, 2007, 2007(1): 185–185.               of dynamic crosstalk cancellation filters[J]. IEEE/ACM
             [50] Fang Q, Xu H, Xia R, et al. Equalization of sound repro-  Trans.  Audio Speech Lang.  Process., 2014, 22(9):
                 duction system based on the human perception character-  1345–1354.
                 istics[C]//Intelligent Information Hiding and Multimedia  [67] Kirkeby O, Nelson P A. Digital filter design for virtual
                 Signal Processing (IIH-MSP), 2015 International Confer-  source imaging systems[C]//Audio Engineering Society
                 ence on. IEEE, 2015: 380–383.                     Convention 104. Audio Engineering Society, 1998.
             [51] Martin R L, McAnally K I, Senova M A. Free-field equiv-  [68] Kim S M, Wang S. A Wiener filter approach to the binau-
                 alent localization of virtual audio[J]. J. Audio Eng. Soc.,  ral reproduction of stereo sound[J]. J. Acoust. Soc. Am.,
                 2001, 49(1/2): 14–22.                             2003, 114(6): 3179–3188.
             [52] Zhang M, Tan K C, Er M H. Three-dimensional sound  [69] Wang L, Yin F, Chen Z. A stereo crosstalk cancella-
                 synthesis based on head-related transfer functions[J]. J.  tion system based on the common-acoustical pole/zero
                 Audio Eng. Soc., 1998, 46(10): 836–844.           model[J]. EURASIP Journal on Advances in Signal Pro-
             [53] Park M, Choi S, Kim S, et al. Improvement of front-back  cessing, 2010, 2010(1): 719.
                 sound localization characteristics in headphone-based 3D  [70] Kirkeby O, Rubak P, Johansen L G, et al. Implementa-
                 sound generation[C]//Advanced Communication Technol-  tion of cross-talk cancellation networks using warped FIR
                 ogy, 2005, ICACT 2005. The 7th International Confer-  filters[C]//Audio Engineering Society Conference: 16th
                 ence on. IEEE, 2005, 1: 273–276.                  International Conference: Spatial Sound Reproduction.
             [54] Lee S, Kim L H, Sung K M. Head related trans-    Audio Engineering Society, 1999.
                 fer function refinement using directional weighting func-  [71] Jeong J, Kim J T, Lee J, et al. Design and implementa-
                 tion[C]//Audio Engineering Society Convention 115. Au-  tion of IIR crosstalk cancellation filters approximating fre-
                 dio Engineering Society, 2003.                    quency warping[C]//Audio Engineering Society Conven-
             [55] Tan C J, Gan W S. User-defined spectral manipulation of  tion 118. Audio Engineering Society, 2005.
                 HRTF for improved localisation in 3D sound systems[J].  [72] Bai M R, Lee C C. Comprehensive analysis of loudspeaker
                 Electronics Letters, 1998, 34(25): 2387–2389.     span effects on crosstalk cancellation in spatial sound
             [56] Møller H, Hammershøi D, Jensen C B, et al. Transfer  reproduction[C]//Audio Engineering Society Convention
                 characteristics of headphones measured on human ears[J].  120. Audio Engineering Society, 2006.
                 J. Audio Eng. Soc., 1995, 43(4): 203–217.      [73] Ward D B. Joint least squares optimization for robust
             [57] Wightman F L, Kistler D J. Headphone simulation of free-  acoustic crosstalk cancellation[J]. IEEE Trans.  Audio
                 field listening. II: psychophysical validation[J]. J. Acoust.  Speech Lang. Process., 2000, 8(2): 211–215.
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