參考文獻 |
[1]. MPEG. Coding of moving pictures and associated audio for digital storage media at up to 1.5 Mbit/s, part 3: Audio, International Standard IS 11172-3, ISO/IEC JTC1/SC29 WG11, 1992.
[2]. MPEG. Information Technology – generic coding of moving pictures and associated audio, part 3: Audio, International Standard IS 13818-3, ISO/IEC JTC1/SC29 WG11, 1994.
[3]. MPEG. MPEG-2 Advanced Audio Coding, AAC, International Standard IS 13818-7, ISO/IEC JTC1/SC29 WG11, 1997.
[4]. MPEG. Information technology – Coding of audio-visual objects – Part 3: Audio, International Standard IS 14496-3, ISO/IEC JTC1/SC29 WG11, 1999.
[5]. MPEG. Information technology – Coding of audio-visual objects – Part 3: Audio, Amendment 1: Bandwidth extension. ISO/IEC 14496-3:2001/Amd. 1:2003, Nov. 2003.
[6]. MPEG Information technology – Coding of audio-visual objects – part 3: Audio, Amendment 2: Parametric coding for high-quality audio, ISO/IEC 14496-3/Amd. 2: 2004.
[7]. MPEG Information technology – Coding of audio-visual objects – part 3: Audio, Amendment 2: Audio Lossless Coding, ISO/IEC 14496-3/Amd. 2: 2005.
[8]. MPEG Information technology – Coding of audio-visual objects – part 3: Audio, Amendment 3: Scalable Lossless Coding, ISO/IEC 14496-3/Amd. 3: 2005.
[9]. R. Geiger, T. Sporer, J. Koller, and K. Brandenburg, “Audio Coding based on Integer Transform,” in AES 111th Convention, New York, NY, USA Preprint 5471 Sept 2001.
[10]. P. Coussy, A. Baganne, and E. Martin. “Virtual component IP re-use in telecommunication systems design: a case study of MPEG-2/JPEG2000 encoder,” IEEE Proc .ICECS2002. vol. 2, pp.733-736, Sept. 2002
[11]. C.N. Liu, and T.H. Tsai, “SoC platform based design of MPEG-2/4 AAC audio decoder,” IEEE Proc .ISCAS2005. vol. 3, pp.2581-2584, May. 2005
[12]. Domazet, D.; Kovac, M.; “Advanced software implementation of MPEG-AAC audio encoder”, 4th EURASIP Conference focused on Video/Image Processing and Multimedia Communications, 2003. Volume 2, 2-5 July 2003 Page(s):679 - 684 vol.2
[13]. D. Huang, X. Gong, D. Zhou, T. Miki, S. Hotani, “Implementation of the MPEG-4 Advanced Audio Coding encoder on ADSP-21060 SHARC,” in Proceedings of the 1999 IEEE International Symposium on Circuits and Systems, Vol. 3, page(s): 544 –547.
[14]. D. Alberto, P. Rafael, R. Begona, A. Enrique, and P. Antonio; “A Robust and Efficient Implementation of MPEG-2/4 AAC Natural Audio Coders” , in AES 112th Convention 2002 May 10-13 Munich,Germany
[15]. P. Antonio, A. Enrique, R. Begona, P. Rafael, and D. Alberto;” Realtime implementations of MPEG-2 and MPEG-4 natural audio coders” , in AES 110th Convention 2001 May 12-15 Amsterdam, The Netherlands
[16]. Y.C. Lu; C.-F. Shen and C.K. Chen; “A novel hardware accelerator architecture for MPEG-2/4 AAC encoder”, 2004 IEEE International Conference on Multimedia and Expo, 2004. ICME '04. Volume 2, 27-30 June 2004 Page(s):1139- 1142 Vol.2
[17]. M. Kahrs, K. Brandenburg, Applications of digital signal processing to audio and acoustics. Kluwer Academic Publishers, 1998, p.59.
[18]. J.H. Luo, “Design and VLSI implementation of Low Complexity MDCT-based Psychoacoustic Model Co-Processor for MPEG-2/4 AAC Encoder,” Department of Electrical Engineering National Central University Chung-Li; Master thesis, 2006
[19]. Fengduo Hu, “ITE Technology Incorporated,”2003.
[20]. Y. Takamizawa, T. Nomura, and M. Ikekawa, “High-quality and processor-efficient implementation of an MPEG-2 AAC encoder,” in Proceedings of the 2001 IEEE International Conference on Acoustics, Speech, and Signal Processing, Vol. 2, Page(s): 985 –988.
[21]. J. D. Johnston, “Transform coding of audio signals using perceptual noise criteria,” IEEE Journal on Selected Areas in Communications, Vol. 6, No 2, pp. 314-323, Feb., 1988.
[22]. I. Dimkoviae, D. Milovanoviae, Z. Bojkoviae, “Fast software implementation of MPEG advanced audio encoder,” 2002 14th International Conference on Digital Signal Processing, Vol. 2, Page(s): 839 –843.
[23]. M. Kahrs, K. Brandenburg, Applications of digital signal processing to audio and acoustics. Kluwer Academic Publishers, 1998, p.59.
[24]. S.W Huang; T.H. Tsai; L.G. Chen; “A low complexity design of psycho-acoustic model for MPEG-2/4 advanced audio coding”, IEEE Transactions on Consumer Electronics Volume 50, Issue 4, Nov. 2004 Page(s):1209 - 1217 Digital Object Identifier 10.1109/TCE.2004.1362521
[25]. S.W. Huang; L.G. Chen; T.H. Tsai; “Memory and Computationally Efficient Psychoacoustic Model for MPEG AAC on 16-bit Fixed-point Processors” Circuits and Systems, 2005. ISCAS 2005. Symposium on IEEE International 23-26 May 2005 Page(s):3155 – 3158.
[26]. P.S. Wu, and Y.T. Hwan; “Efficient IMDCT core designs for audio signal processing”, IEEE Workshop on Signal Processing Systems, 2003. SIPS 2003. 27-29 Aug. 2003 Page(s):275 – 280
[27]. P. Duhmel, Y. Mahieux, and J.P. Petit, “A fast algorithm for the implementation of filter banks based 1on ‘time domain aliasing cancellation’ “, International Conference on Acoustics, Speech, and Signal Processing, Vol. 3, Page(s): 2209-2212, Apr, 1991
[28]. Britanak, V.; Rao, K.R.; “An efficient implementation of the forward and inverse MDCT in MPEG audio coding”, Signal Processing Letters, IEEE Volume 8, Issue 2, Feb. 2001 Page(s):48 - 51 Digital Object Identifier 10.1109/97.895372.
[29]. Y.H. Fan, Madisetti, V.K. and Mersereau, R.M.; “On fast algorithms for computing the inverse modified discrete cosine transform”, IEEE Signal Processing Letters, Volume 6, Issue 3, March 1999 Page(s):61 - 64 Digital Object Identifier 10.1109/97.744625
[30]. M.-H Cheng, Y.-H. Hsu;”Fast IMDCT/MDCT algorithms-a matrix approach”, IEEE Trans. On Signal Processing. Jan 2003, pp 221-9
[31]. A.Wenzler and E. Luder, “New structures for complex multipliers and their noise analysis,” in Proc. IEEE Int. Symp. Circuits Syst.,May 1995, vol. 2, pp. 1432–1435.
[32]. Lau, W. and Chwu, A.; “A common transform engine for MPEG and AC3 audio decoder”, IEEE Transactions on Consumer Electronics, Volume 43, Issue 3, Aug. 1997 Page(s):559 – 566
[33]. T.H. Tsai, S.W. Huang, J.H. Luo, “Architecture Design of Psychoacoustic Model for MPEG-2/4 AAC Audio Encoder” The 16th VLSI Design/CAD Symposium (VLSI), 2005.
[34]. T.H. Tsai, J.H. Luo, S.W. Huang, “Low Complexity Architecture Design of MDCT-Based Psychoacoustic Model for MPEG 2/4 AAC Encoder,” IEEE Proc .ISCAS2006. May. 2006
[35]. Abed, K.H. Siferd, R.E. “CMOS VLSI implementation of a low-power logarithmic converter” IEEE Transactions on Computers, Volume 52, Issue 11, Nov. 2003 Page(s):1421 – 1433.
[36]. H. Chang et al., “Surviving the SoC Revolution: A Guide to Platform-based Designs,” Kluwer Academic, Norwell, Mass., 1999
[37]. M. A. Watson and P. Buettner, “Design and implementation of AAC decoders,” IEEE Trans. Consumer Electronics, vol. 46, issue 3, pp.819-824, Aug. 2000.
[38]. T. H. Tsai, C. N. Liu and Y. W. Wang, “A pure-ASIC design approach for MPEG-2 AAC audio decoder,” in Proc. 4th IEEE Int. Conf. Information, Communications & Signal Processing and 4th Pacific-Rim Conf. Multimedia (ICICS-PCM), vol. 3, pp.1633-1636, Dec. 2003.
[39]. P. Liu, L. Liu, N. Deng, X. Fu, J. Liu, Q. Liu, G. Zhang, and B. He, “VLSI Implementation for Portable Application Oriented MPEG-4 Audio Codec,” Circuits and Systems, 2007. ISCAS 2007. Symposium on IEEE International (ISCAS2007), pp. 777 - 780, May. 2007.
[40]. IP Qualification Alliance, “IP Qualification Guidelines”, Industrial Technology Research Institute, 2003
[41]. Synopsys Inc.” DesignWare AHB Verification IP Databook , ” Synopsys, May 2006.
[42]. CoWare Inc. http://www.corware.com/
[43]. T.H. Tsai and C.N. Liu, “A Configurable Common Filterbank Processor for Multi-Standard Audio Decoder,” IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences, Vol. E90-A, No.9, pp.1913-1923, Sep. 2007.
[44]. C.C. Wang, and Y.C. Lin “An Efficient FFT Processor for DAB Receiver Using Circuit-Sharing Pipeline Design” IEEE Transactions on Broadcasting, Vol. 53, Issue.3, pp.670-677, Sep. 2007.
[45]. S.C. Tai , C.C. Wang, and C.Y. Lin “FFT and IMDCT circuit sharing in DAB receiver” IEEE Transactions on Broadcasting, Vol. 49, Issue.2, pp.124-131, June 2003. |