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Coded overlapped code division multiplexing system with Turbo product structure 被引量:1

Coded overlapped code division multiplexing system with Turbo product structure
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摘要 Coded overlapped code division multiplexing system with Turbo product structure (TPC-OVCDM) is introduced, and trellis coded modulation (TCM) code is employed as error correcting code for uncoded overlapped code division multiplexing (OVCDM) system. In such a scheme, row code and column code are TCM and OVCDM spreading code, respectively. Data bits are only encoded directly by TCM and transformed into a matrix. Each column of this matrix is then permuted by symbol interleaver before being encoded by OVCDM spreading code. During iterative decoding process in the receiver, two constituent decoders use symbol by symbol BCJR algorithm in the log domain. The order of decoding two sub-codes is determined by the encoding order. The proportion of TCM coding and OVCDM coding affects system performance. For fixed coding structure and symbol interleaver, the performance of TPC-OVCDM systems of different proportions of additive white Gaussian noise (AWGN) channel have been simulated. The results show that TPC-OVCDM system of reasonable proportion can achieve significant coding gain, compared with uncoded OVCDM system under the condition of same spectral efficiency at bit error rate (BER) level of 10^-5. Coded overlapped code division multiplexing system with Turbo product structure (TPC-OVCDM) is introduced, and trellis coded modulation (TCM) code is employed as error correcting code for uncoded overlapped code division multiplexing (OVCDM) system. In such a scheme, row code and column code are TCM and OVCDM spreading code, respectively. Data bits are only encoded directly by TCM and transformed into a matrix. Each column of this matrix is then permuted by symbol interleaver before being encoded by OVCDM spreading code. During iterative decoding process in the receiver, two constituent decoders use symbol by symbol BCJR algorithm in the log domain. The order of decoding two sub-codes is determined by the encoding order. The proportion of TCM coding and OVCDM coding affects system performance. For fixed coding structure and symbol interleaver, the performance of TPC-OVCDM systems of different proportions of additive white Gaussian noise (AWGN) channel have been simulated. The results show that TPC-OVCDM system of reasonable proportion can achieve significant coding gain, compared with uncoded OVCDM system under the condition of same spectral efficiency at bit error rate (BER) level of 10^-5.
出处 《The Journal of China Universities of Posts and Telecommunications》 EI CSCD 2010年第2期25-29,共5页 中国邮电高校学报(英文版)
基金 supported by the National Natural Science Foundation of China (90604035)
关键词 overlapped code division multiplexing trellis coded modulation TPC-OVCDM iterative decoding overlapped code division multiplexing, trellis coded modulation, TPC-OVCDM, iterative decoding
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同被引文献7

  • 1Zhou Suhua, Fang Li, Li Daoben. A novel symbol-inter- leaved serially concatenated overlapped multiplexing sys- tem [ C ]//2009 2nd Conference on Power Electronics and Intelligent Transportation System ( PEIT ). Shenzhen: IEEE Computer Society, 2009 : 373-376.
  • 2Sun Peng, Li Daoben, Fang Li. Design of simplified overlapped code division multiplexing system [ C ]//2011 International Conference on Wireless Communications and Signal Processing(WCSP). Nanjing: IEEE, 2011: 9-11.
  • 3Li Daoben. An overlapped code division multiplexing method, PCT/CN2007/000536[ P]. 2007-02-14.
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  • 7Zhou Suhua, Gao Song, Li Daoben. Improved serially concatenated overlapped multiplexing system and perform- ance [ C ]//Proceedings of the 2012 International Confer- ence on Information Technology and Software Engineer- ing. Volume 210 of Lecture Notes in Electrical Engineer- ing. Beijing: Springer Berlin Heidelberg, 2012: 183- 189.

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