期刊文献+

针对IPv4协议的容错解码算法研究 被引量:3

Algorithmic Research on Error Resilient Decoding for IPv4 Protocol
下载PDF
导出
摘要 在易错网络中传输IP(因特网协议)数据包时,除了网络拥塞之外,信道误码也容易导致数据包丢失。丢包对信源恢复会造成较大影响。为了降低误码导致的丢包率,该文研究了IPv4协议解码的可靠性问题,分析了IPv4(因特网协议版本4)协议各字段之间的相关性,建立了IPv4协议容错解码的理论模型,利用最大后验概率推导出容错解码的准则。在该基础上提出一种以分段方式估计协议字段的算法,实验结果表明该算法大大增强了IPv4协议解码的纠错能力。 When transmitting Interact protocol (IP) packets over error-prone networks, bit error can cause packet loss besides network congestion. Packet loss makes a strong impact on source recovery. For the sake of decreasing packet loss ratio, we consider the problem of error resilient decoding for internet protocol version 4 (IPv4). The correlation between fields in IP packet header is analyzed, a mathematical model for error resilient IPv4 decoding, and the error resilient decoding criterion using maximum a posterior (MAP) is deduced. Based on the decoding is constructed criterion, a novel error resilient decoding algorithm is proposed for IPv4 in segmenting form. Experimental results show that the algorithm can enhances the abilities of correcting errors significantly.
出处 《电子科技大学学报》 EI CAS CSCD 北大核心 2010年第1期29-32,共4页 Journal of University of Electronic Science and Technology of China
关键词 误码率 纠错 容错解码 分组网络 bit error rate error correction error resilient decoding packet networks
  • 相关文献

参考文献9

  • 1POSTEL J B. Intemet Protocol, IETF RFC 791[EB/OL]. [2008-04-13]. http://www.ieff.org/rfc/rfc0791.txt.
  • 2GOODE B. Voice over interact protocol (VoIP)[J]. Proceedings of the IEEE, 2002, 90(9): 1495-1517.
  • 3STEIN Y. In-depth comparison of TDMoIP and CESoPSN [EB/OL]. [2008-04-13], http://www.dspcsp.com/tdmoip/ compare.pdf.
  • 4PACK S, LEE H. Call setup latency analysis in SIP-based voice over WLANs[J]. IEEE Communication Letters, 2008, 12(2):103-105.
  • 5SANSO B, AWAD C, GIRARD A. Can diffserv guarantee IP QoS under failures[J]. IEEE Network, 2006, 20(4): 32-40.
  • 6CHUA T K, PHEANIS D C. QoS evaluation of sender-based loss-recovery techniques for VolP[J]. IEEE Network, 2006, 20(6): 14-22.
  • 7ETSI TS 123 107. QoS concept and architecture,V.4.3.0 [EB/OL]. [2008-04-13]. http://www.etsi.org.
  • 8MASSEY J. Variable-Length codes and the Fano metric[J]. IEEE Trans on Information Theory, 1972, 18(1): 196-198.
  • 9POTTIE G J, TAYLOR D P. A comparison of reduced complexity decoding algorithms for trellis codes[J]. IEEE Journal on Selected Areas in Communications, 1989, 7(9): 1369-1380.

同被引文献24

  • 1王刚,刘立柱.ZIP文件压缩编码分析[J].微计算机信息,2006(05X):283-285. 被引量:8
  • 2张建龙,吴成柯,石迎波,宋锐.一种基于混合域牛顿插值的视频错误隐藏方法[J].西安电子科技大学学报,2006,33(5):687-690. 被引量:1
  • 3冯镔,朱光喜,刘文予.基于H.264/AVC的时空域差错隐藏方案[J].通信学报,2007,28(4):72-79. 被引量:5
  • 4RFC 760. DoD standard Internet Protocol [S]. Virginia: Internet Engineering Task Force, 1980.
  • 5Rao S, Shama K. Cross layer protocols for multimedia transmission in wireless networks [J]. International Journal of Computer Science & Engineering Survey, 2012, 3(3): 15 - 28.
  • 6Hu Ruijing, Kieffer M, Duhamel P. Protocol-assisted channel decoding [J]. IEEE Signal Processing Letters, 2012,19(8): 483-486.
  • 7Marin C, Bouchireb K, Kieffer M, et al. Joint exploitation of residual source information and MAC layer CRC redundancy for robust video decoding [J]. IEEE Transactions on Wireless Communications, 2010, 9(7): 2165 - 2175.
  • 8Com roe R, Costello D. ARQ Schemes for data transmission in mobile radio systems [J]. IEEE Journal on Selected Areas in Communications, 1984, 2(4): 472 - 481.
  • 9Marin C, Leprovost Y, Kieffer M, et al. Robust mac-lite and soft header recovery for packetized multimedia transmission [J]. IEEE Transactions on Communications, 2010, 58(3): 775 - 784.
  • 10Khayam S A, Radha H. Maximum-likelihood header estimation: A cross-layer methodology for wireless multimedia [J]. IEEE Transactions on Wireless Communications, 2007, 6(0): 3946 - 3954.

引证文献3

二级引证文献3

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