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AVS-P10立体声编码算法的优化设计与实现

Optimization design and implementation of AVS-P10 stereo coding algorithm
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摘要 AVS-P10是我国首部具有完全自主知识产权的移动音频编解码标准,但是其立体声编码存在重建声像不够稳定、编码复杂度较高的问题。根据参数立体声编码原理,采用声道下混和立体声参数提取及合成技术,以AVS-P10的核心编码器为基础,设计并实现了一种高效的立体声编解码方案。实验结果表明,同等码率下,优化后的算法比AVS-P10立体声编码算法的主观音质提升约10MUSHRA得分,编码复杂度下降幅度达到40%~60%,解码复杂度略有下降。 AVS-P10 is the first national standard for mobile audio codec with completely independent intellectual property rights, but its stereo coding algorithm has the problem of unstable reconstructed sound image and high computation complexity. A new stereo coding scheme is proposed by using the channel down-mixing, stereo parameter extraction and synthetic technology. The frame and key modules are designed and implemented. Experimental results show that both of the subjective quality and computing efficiency of the optimized algorithm are better than those of the original stereo coding algorithm of AVS-P10. The encoding complexity decreases to 40%~60%, and the decoding complexity decreases slightly.
出处 《计算机工程与应用》 CSCD 北大核心 2016年第8期141-147,共7页 Computer Engineering and Applications
基金 粤港关键领域重点突破项目(No.2012A090200007) 国家自然科学基金面上青年项目(No.61201340)
关键词 参数立体声编码 先进音视频编码标准-第10部分(AVS-P10) 空间参数 parametric stereo coding Advanced Audio and Video coding Standard-Part 10(AVS-P10) spatial parameter
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参考文献15

  • 1数字音视频编解码技术标准工作组.GB/T20090信息技术先进音视频编码第10部分移动语音与音频编码标准[S].2013.
  • 2Zhan J,Choo K,Oh E.Bandwidth extension for China AVS-M standard[C]//IEEE International Conference on Acoustics,Speech and Signal Processing,2009:4149-4152.
  • 3Quackenbush S.MPEG unified speech and audio coding[J].IEEE Multi Media,2013,20(2):72-78.
  • 4刘彬彬,徐雄,刘佩林.一种基于分裂表扩展的格型矢量量化新方法[J].上海交通大学学报,2009,43(7):1085-1089. 被引量:2
  • 5王嵩,鲍长春,李晓明.参数音频编码回顾[J].信号处理,2011,27(4):575-586. 被引量:2
  • 6Strutt J W.On our perception of sound direction[J].Philosophical Magazine,1907,13:214-232.
  • 7Schuijers E,Oomen W,den Brinker B,et al.Advances in parametric coding for high-quality audio[C]//Proceedings of AES Convention,2003.
  • 8Herre J,Dietz M.MPEG-4 high-efficiency AAC coding[J].IEEE Signal Processing Magazine,2008,25(3):137-142.
  • 93GPP TS 26.401 version12.0.0 Release 12.Enhanced aacPlus general audio codec:general description[Z].2014.
  • 103GPP TS 26.405 version 12.0.0 Release 12.Encoder specification parametric stereo part[Z].2014.

二级参考文献110

  • 1Bosi M, Brandenburg K et al.. ISO/IEC MPEG-2 Advanced audio coding[ J ]. Journal of the Audio Engineering Society, 1997, 45(10) : 789-814.
  • 2Berger T, Gibson J D. Lossy source coding [ J ]. IEEE Transactions on Information Theory, 1998,44 (6) : 2693- 2723.
  • 3McAulay R J, Quatieri T F. Speech analysis/synthesis based on a sinusoidal representation [ J ]. IEEE Transactions on Acoustics, Speech, and Signal Processing, 1986, 34(4): 744-754.
  • 4McAulay R J, Quatieri T F. Sinusoidal coding[A]. W B Kleijn, K K Paliwal. Speech Coding and Synthesis [ M ]. Amsterdam, The Netherlands: Elsevier, 1995. 121-173.
  • 5Smith III J O, Serra X. Spectral modeling synthesis: a sound analysis/synthesis system based on a deterministic plus stochastic decomposition[ J ]. Computer Music Journal, 1990, 14(4): 12-24.
  • 6George E B, Smith M J T. Ana|ysis-by-synthesis/overlapadd sinusoidal modeling applied to the analysis-synthesis of musical tones [ J]. Journal of the Audio Engineering Society, 1992, 40(6) : 497-516.
  • 7Lindblom J, Hedelin P. Packet loss concealment based on sinusoidal modeling [ A]. in Proc. 1EEE Workshop on Speech Coding for Telecommunications '02 [ C ]. Delavan, USA: IEEE Signal Processing Society, IEEE Comnmnications Society, 2002. 65-67.
  • 8Rφdbro C A, Murthi M Net al.. Hidden markov model based framework for packet loss concealmenl in voice over IP[J]. IEEE Transactions on Audio, Speech, and Lan- guage Processing, 2006, 14(5): 1609-1623.
  • 9ISO/IEC 14496-3 : 1999, FPDAM1 : Audio extensions[S].
  • 10ISO/IEC 14496-3 : 2001, FPDAM2: Parametric coding [S].

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