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一种基于PPM的LDPC编译码方案

车书玲 李坪 王新梅

车书玲, 李坪, 王新梅. 一种基于PPM的LDPC编译码方案[J]. 电子与信息学报, 2008, 30(11): 2630-2633. doi: 10.3724/SP.J.1146.2007.00693
引用本文: 车书玲, 李坪, 王新梅. 一种基于PPM的LDPC编译码方案[J]. 电子与信息学报, 2008, 30(11): 2630-2633. doi: 10.3724/SP.J.1146.2007.00693
Che Shu-Ling, Li Ping, Wang Xin-Mei. An Encoding and Decoding Scheme of LDPC Codes Based on Pulse Position Modulation[J]. Journal of Electronics & Information Technology, 2008, 30(11): 2630-2633. doi: 10.3724/SP.J.1146.2007.00693
Citation: Che Shu-Ling, Li Ping, Wang Xin-Mei. An Encoding and Decoding Scheme of LDPC Codes Based on Pulse Position Modulation[J]. Journal of Electronics & Information Technology, 2008, 30(11): 2630-2633. doi: 10.3724/SP.J.1146.2007.00693

一种基于PPM的LDPC编译码方案

doi: 10.3724/SP.J.1146.2007.00693
基金项目: 

国家自然科学基金(60572149)资助课题

An Encoding and Decoding Scheme of LDPC Codes Based on Pulse Position Modulation

  • 摘要: 该文基于LDPC码和PPM调制方式构造了一种适用于UWB无线通信系统的低码率的编译码方案LDPC-PPM。本方案在保证系统性能的前提下,通过改变编码比特到调制符号的映射方式,不但避免了一般编码调制系统中译码和解调之间的迭代运算,而且可以应用快速Hadamard变换(FHT)和基于FHT的后验概率译码(APP-FHT)来进一步降低接收端的译码复杂度。可以证明,该方案等价于BPSK调制下的低码率的LDPC-Hadamard码。仿真结果表明,在信息比特长度是65536,该方案可以在-1.18dB处达到误比特率为 的性能,仅比采用BPSK调制的Turbo-Hadamard码差0.02dB。
  • [1] Komulainen P and Pehkonen K. Performance evaluation ofsuper-orthogonal turbo codes in AWGN and flat Raleighfading channel[J].IEEE J. Select. Areas Commun.1998, 16(2):196-205 [2] Li Ping, Leung W K, and Wu K Y. Low-rateturbo-Hadamard codes[J].IEEE Trans. on Inform. Theory.2003, 49(12):3213-3224 [3] Yue Guosen, Li Ping, and Wang Xiaodong. Low-rategeneralized low-density parity-check codes with Hadamardconstraints. Proc. IEEE Int. Symp. Inform. Theory (ISIT),Australia, 2005: 1377-1381. [4] Yue Guosen, Li Ping, and Wang Xiaodong. Generalizedlow-density parity-check codes based on Hadamardconstraints[J].IEEE Trans. on Inform. Theory.2007, 53(3):1058-1079 [5] Zhang Hao and Gulliver T Aaron. Bi-orthogonal pulseposition modulation for time-hopping multiple access UWBcommunications[J].IEEE Trans. on Wireless Commun.2005,4(3):1154-1162 [6] Wilson Stephen G. Digital Modulation and Coding. Prentice-Hall, Inc., 1996, Section 3.3. [7] Lentmaier L and Ziganggirov K. Iterative decoding ofgeneralized low-density parity-check codes. Proc. IEEE Int.Symp. Inform. Theory (ISIT), Cambridge, 1999: 149. [8] Lentmaier M and Zigangirov K Sh. On generalizedlow-density parity-check codes based on hamming componentcodes[J].IEEE Commun. Lett.1999, 3(8):248-250 [9] Mckay D J C and Neal R M. Near Shannon limit performanceof low-density parity check codes[J].IEE Electron. Lett.1997,33(6):457-458 [10] Li Ping, Leung W K, and Phamdo Nam. Low density paritycheck codes with semi-random parity check matrix[J].IEEElectron. Lett.1999, 35(1):38-39
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出版历程
  • 收稿日期:  2007-05-08
  • 修回日期:  2007-09-28
  • 刊出日期:  2008-11-19

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