期刊文献+

An Adaptive Joint Source/Channel Coding Using Error Correcting Arithmetic Codes 被引量:1

An Adaptive Joint Source/Channel Coding Using Error Correcting Arithmetic Codes
下载PDF
导出
摘要 An approximately optimal adaptive arithmetic coding (AC) system using a forbidden symbol (FS) over noisy channels was proposed which allows one to jointly and adaptively design the source decoding and channel correcting in a single process, with superior performance compared with traditional separated techniques. The concept of adaptiveness is applied not only to the source model but also to the amount of coding redundancy. In addition, an improved branch metric computing algorithm and a faster sequential searching algorithm compared with the system proposed by Grangetto were proposed. The proposed system is tested in the case of image transmission over the AWGN channel, and compared with traditional separated system in terms of packet error rate and complexity. Both hard and soft decoding were taken into account. An approximately optimal adaptive arithmetic coding (AC) system using a forbidden symbol (FS) over noisy channels was proposed which allows one to jointly and adaptively design the source decoding and channel correcting in a single process, with superior performance compared with traditional separated techniques. The concept of adaptiveness is applied not only to the source model but also to the amount of coding redundancy. In addition, an improved branch metric computing algorithm and a faster sequential searching algorithm compared with the system proposed by Grangetto were proposed. The proposed system is tested in the case of image transmission over the AWGN channel, and compared with traditional separated system in terms of packet error rate and complexity. Both hard and soft decoding were taken into account.
出处 《Journal of Shanghai Jiaotong university(Science)》 EI 2007年第4期448-453,共6页 上海交通大学学报(英文版)
关键词 ARITHMETIC CODING joint SOURCE channel CODING MAXIMUM a POSTERIORI (MAP) forbidden SYMBOL arithmetic coding joint source channel coding maximum a posteriori (MAP) forbidden symbol
  • 相关文献

参考文献18

  • 1Subbalakshmi K P,Jacques V.On the joint source- channel decoding of variable-length encoded sources: The BSC case. IEEE Transactions on Communications . 2001
  • 2Kliewer J,Thobaben R.Iterative joint source-chan- nel decoding of variable-length codes using residual source redundancy. IEEE Trans Wireless Com- mun . 2005
  • 3Fabris F.Variable-length-to-variable length source coding: A greedy step-by-step algorithm. IEEE Transactions on Information Theory . 1992
  • 4Wang Y,Yu Song-yu.Joint source-channel decoding for H 264 coded video stream. IEEE Transac- tions on Consumer Electronics . 2005
  • 5Wang Y,Yu Song-yu,Yang J.Joint source-channel decoding for H 264 coded video stream. IEEE International Workshop on Multimedia Signal Pro- cessing . 2005
  • 6YANGHua YANGSongan YUSongyu.A New Error Robustness Scheme Based on UEP for H.264 Streaming over Internet[J].Chinese Journal of Electronics,2005,14(1):78-82. 被引量:1
  • 7Boyd C,Cleary J,Irvine S I, et al.Integrating error detection into arithmetic coding. IEEE Transactions on Communications . 1997
  • 8Elmasry G.Joint lossless-source and channel coding using automatic repeat request. IEEE Transactions on Communications . 1999
  • 9Elmasry G.Embedding channel coding in arithmetic coding. Proc Inst Elect Eng Commun . 1999
  • 10Elmasry G,Shi Y Q.MAP symbol decoding of arithmetic coding with embedded channel coding. Proc Wireless Communications and Networking Conf . 1999

同被引文献7

  • 1Li Chun-wen, Zhu Peng. Optimal control of source and channel rate for VBR video transmission over VBR channels [J]. IEEE Trans. Commm. Letters, 2006, 10(1): 53-55.
  • 2Grangetto M, Cosman P, Olmo G. Joint source/channel coding and MAP decoding of arithmetic codes [J]. IEEE Trans. Commun., 2005, 53(6): 1007-1016.
  • 3Alajaji F, Fuja T E. A communication channel modeled on contagion [J]. IEEE Trans. Info. Theory, 1994, 40(11): 2035-2041.
  • 4Anderson J-B, Mohan S. Source and channel coding [M]. Norwell, MA, Kluwer, 1991. 289-390.
  • 5Guionnet T, Guillemot C. Joint source-channel decoding of quasi-arithmetic codes [A]. IEEE DCC [C]. 2006. 272-281.
  • 6黄诚,易本顺.基于LDPC码率自适应的HARQ系统[J].电路与系统学报,2009,14(3):117-120. 被引量:2
  • 7肖嵩,张方,吴成柯.无线信道图像的联合信源信道编码速率分配[J].西安电子科技大学学报,2002,29(6):716-720. 被引量:7

引证文献1

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部