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AWGN与Rayleigh信道下TPC性能仿真研究 被引量:4

Performance Simulation and Research on Turbo Product Codes over AWGN and Rayleigh Channels
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摘要 Turbo乘积码与Turbo卷积码性能相近,分量码采用了线性分组码,不仅译码复杂度低、译码延迟小,而且能在高码率时保持较高的译码性能。针对瑞利信道中Turbo乘积码的性能和适用性进行了研究,并与高斯信道做了对比。重点研究了Turbo乘积码的Chase译码算法,提出了瑞利信道中传统Chase算法的改进算法。通过Matlab仿真结果表明,Turbo乘积码在瑞利信道中虽较高斯信道性能有所下降,但仍具有良好的编码增益。 Turbo Product Code(TPC) ,whose component codes use linear block codes,not only has a close performance to convo- lutional Turbo Code with a lower decoding complexity and smaller decoding delay,but can maintain a relatively high decoding perform- ance under high coding rate. This paper made a research on the performance and application of Turbo product codes in the Rayteigh channel compared with the AWGN channel. Especially,this paper focuses on Chase decoding algorithm and its improvement for the Rayleigh channel. The simulation results indicate that Turbo product codes have excellent performance in the Rayleigh channel though the BER performance degrades somewhat compared with the one in the AWGN channel.
出处 《无线电工程》 2013年第9期7-9,60,共4页 Radio Engineering
关键词 TURBO乘积码 高斯信道 瑞利信道 CHASE算法 Turbo product codes AWGN Rayleigh channel Chase decoding algorithm
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参考文献12

  • 1BERROU C, GLAVIEUX A, THITMAJSHIMA P. Near Shannon Limit Error-correcting Coding and Decoding Tur- bo Codes[ C ]. IEEE International Conference on Commu- ni cations ( ICC ) , 1993 : 1 064 - 1 070.
  • 2BENEDETTO S, DIVSALAR D, MONTORSI G, et al. Ser- ial Concatenation of Interleaved Codes:Performance Anal- ysis, Design, and herative Decoding [ J ]. IEEE Trans. On Inf. Theory, 1998,44 ( 3 ) : 909 - 926.
  • 3ROBERTSON P. Illuminating the Structure of Code and De- coder of Parallel Concatenated Recursive Systematic(Turbo) Codes [ J ]. Proc. GLOBECOM'94,1994 : 129 - 130.
  • 4PYNDIAH R, GLAVIEUX A, PICART A, et al. Near Opti- mum Decoding of Product Codes [ C ]//In proc. of IEEE GLOBECOM'94 Conference, 1994 : 11 - 12.
  • 5陈跃波,黄旭方,覃团发.Turbo码在瑞利慢衰落信道中的性能仿真与分析[J].广西科学,2003,10(3):192-195. 被引量:4
  • 6HIRST S, HONARY B, MARKARIAN G. Fast Chase Al- gorithm with an Application in Turbo Decoding [ J ]. IEEE Trans. Commun. ,2001,49 : 1 693 - 1 699.
  • 7PYNDIAH R. Near Optimum Decoding of Product Codes: Block Turbo Codes [J]. IEEE Trans. Commun., 1998, 46:1 003 -1 010.
  • 8ARGON C, MCLAUGHLIN W. An Efficient Chase Decod- er for Turbo Product Codes [ J]. IEEE Transactions on Communications, 2004,52 ( 6 ) :896 - 898.
  • 9CHASE D. A Class of Algorithms for Decoding Block Codes with Channel Measurement Information [J]. IEEE Trans. Inform. Theory, 1972, IT-18 : 170 - 182.
  • 10XU Chang-long,LIANG Ying-chang, LEON Wing-seng. A.Low Complexity Decoding Algorithm for Extended Turbo Product Codes [Jl. IEEE Transactions on Wireless Com- munications ,2008,7 ( 1 ) :43 - 47.

二级参考文献7

  • 1Berrou C,Glavieux A, Thitimaishima P. Near Shannon limit error-correcting coding and decoding:Turbo codes. Proc of ICC,1993,1064-1070.
  • 2Robertson P,Hoeher P,Villebrum E. Optimal and suboptimal maximum a posteriori algorithms suitable for turbo decoding. European Trans On Telecommun, 1997, (8): 119-25.
  • 3Hall E K, Wilson S G. Design and analysis of Turbo codes on Rayleigh fading channels. IEEE J of Select Areas in Commun,1998,16(2):160-174.
  • 4Wu Y F. Design and implementation of parallel and serial concatenated convolutional codes. Virginia Tech, 1999.
  • 5Wilson S. Digital Modulation and Coding. Prentice Hall,1996.
  • 6Benedetto S,Montorsi G. Unveiling Turbo codes :some resuits on parallel concatenated coding schemes. IEEE Transactions on Information Theory, 1996,42 (2): 409-429.
  • 7覃团发,黄旭方,陈跃波.基于AWGN信道下Turbo码的性能仿真及分析[J].广西科学,2003,10(2):94-96. 被引量:2

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同被引文献48

  • 1刘东华,王元钦,袁嗣杰,冯春燕,杜国祥.基于瞬时测频的PCM/FM信号解调方法研究[J].系统仿真学报,2005,17(10):2463-2466. 被引量:15
  • 2郑贺,陆佩忠,胡捍英.基于二分图的乘积码迭代译码算法[J].电子与信息学报,2006,28(1):86-91. 被引量:2
  • 3郄绍辉,裴保臣.Turbo乘积码在卫星ATM系统中的应用[J].无线电工程,2006,36(7):62-64. 被引量:1
  • 4JASONSANDERS,EDWARDKANDROT.GPU高性能编程CUDA实战[M].聂雪军,译.北京:机械工业出版社,2011.
  • 5CHINI P, GIAMBENE G, KOTA S. A comparison framework for MSSs [C]// IEEE Global Telecommunications Conference. [S.1.]: 2008 IEEE, 2008: 1-5.
  • 6European Telecommunications Standards Institute. ETSI TS 101 376-1-3: GEO-mobile radio interface specifications [S]. Paris: ETSI, 2011-02-22.
  • 7European Telecommunications Standards Institute. ETSI TS 101 376-3-20: GEO- mobile radio interface specifications [S]. Paris: ETSI, 2001-03-20.
  • 8GAO Qian, L0 Jing, LI Guang-xia. Performance analysis of or- thogonal coded modulation based on 6PSK and BPSK in alerting channel for GEO mobile satellite system [C]//2010 International Conference on Signal Acquisition and Processing. Bangalore: IEEE, 2012: 322-326.
  • 9HUANG Yu-zhen, CHENG Yun-peng, ZHANG Yu-ming, et al. Combine non-binary LDPC codes with M-ary orthogonal spread spectrum modulation [C]// 2010 International Conference on Wireless Communications and Signal Processing (WCSP). Su- zhou: IEEE, 2010: 1-4.
  • 10LIN Shu, COSTELLO D J. Error control coding [M]. London: Prentice Hall, 2004.

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