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浅海水声信道中原模图LDPC码的设计及性能分析

陈震华 许肖梅 陈友淦 苏海涛

陈震华, 许肖梅, 陈友淦, 苏海涛. 浅海水声信道中原模图LDPC码的设计及性能分析[J]. 电子与信息学报, 2016, 38(1): 153-159. doi: 10.11999/JEIT150415
引用本文: 陈震华, 许肖梅, 陈友淦, 苏海涛. 浅海水声信道中原模图LDPC码的设计及性能分析[J]. 电子与信息学报, 2016, 38(1): 153-159. doi: 10.11999/JEIT150415
CHEN Zhenhua, XU Xiaomei, CHEN Yougan, SU Haitao. Design and Analysis of Protograph-based LDPC Codes in Shallow Water Acoustic Channels[J]. Journal of Electronics & Information Technology, 2016, 38(1): 153-159. doi: 10.11999/JEIT150415
Citation: CHEN Zhenhua, XU Xiaomei, CHEN Yougan, SU Haitao. Design and Analysis of Protograph-based LDPC Codes in Shallow Water Acoustic Channels[J]. Journal of Electronics & Information Technology, 2016, 38(1): 153-159. doi: 10.11999/JEIT150415

浅海水声信道中原模图LDPC码的设计及性能分析

doi: 10.11999/JEIT150415
基金项目: 

国家自然科学基金(41176032, 41376040, 41476026),教育部高等学校博士学科点专项科研基金(20130121120033),中央高校基本科研业务费专项资金/厦门大学基础创新科研基金(20720140506)

Design and Analysis of Protograph-based LDPC Codes in Shallow Water Acoustic Channels

Funds: 

The National Natural Science Foundation of China (41176032, 41376040, 41476026), The Specialized Research Fund for the Doctoral Program of Higher Education of China (20130121120033), The Fundamental Research Funds for the Central Universities (20720140506)

  • 摘要: 原模图低密度奇偶校验码相较于传统LDPC码,具有结构简单、迭代译码门限低、易于扩展及线性编译码复杂度等优点。针对强多途、长时延、窄带宽的浅海水声信道,该文研究了PG-LDPC码的设计及性能特征,提出一种码型设计方案,并采用基于原模图度分布的外部信息转移图算法,对所设计PG-LDPC码的纠错性能进行分析及预测。仿真与实验结果表明,与(3,6)随机规则LDPC码相比,所提的PG-LDPC码在低、高信噪比区域均有良好的纠错性能。
  • 陈友淦, 许肖梅, 张兰, 等. 浅海水声信道模型差异对纠错码性能分析的影响[J]. 兵工学报, 2013, 34(11): 1404-1411.
    CHEN Yougan, XU Xiaomei, ZHANG Lan, et al. Effects of different shallow water acoustic channel models on error- correction code performance analysis[J]. Acta Armamentarii, 2013, 34(11): 404-1411.
    LIN M, XU X, CHEN Y, et al. Adaptive RC QC-LDPC channel coding for frequency hopping shallow water acoustic communication[C]. IEEE OCEANS, TaiPei, 2014: 1-4.
    THORPE J. Low-density parity-check (LDPC) codes constructed from protographs[J]. IPN Progress Report, 2003, 42(154): 1-7.
    ABBASFAR A, DIVSALAR D, and YAO K. Accumulate- repeat-accumulate codes[J]. IEEE Transactions on Communications, 2007, 55(4): 692-702.
    DIVSALAR D, DOLINAR S, JONES C R, et al. Capacity- approaching protograph codes[J]. IEEE Journal on Selected Areas in Communications, 2009, 27(6): 876-888.
    GROSA P, FONSECA DOS SANTOS A, LENTMAIER M, et al. Application of protograph-based LDPC codes for UWB short range communication[C]. IEEE International Conference on Ultra-Wideband (ICUWB), Nanjing, 2010, 2: 1-4.
    COSTANTINI L, MATUZ B, LIVA G, et al. Non-binary protograph low-density parity-check codes for space communications[J]. International Journal of Satellite Communications and Networking, 2012, 30(2): 43-51.
    FANG Y, CHEN P, WANG L, et al. Design of protograph LDPC codes for partial response channels[J]. IEEE Transactions on Communications, 2012, 60(10): 2809-2819.
    NGUYEN T V, NOSRATINIA A, and DIVSALAR D. Protograph-based LDPC codes for partial response channels [C]. IEEE International Conference on Communications (ICC), Ottawa, Canada, 2012: 2166-2170.
    PHAKPHISUT W, SUPNITHI P, and PUTTARAK N. EXIT chart analysis of nonbinary protograph LDPC codes for partial response channels[J]. IEEE Transactions on Magnetics, 2014, 50(11): 1-4.
    王铠尧, 肖扬. 基于原模图 LDPC 码的电视频带认知 MIMO 系统[J]. 应用科学学报, 2014, 32(3): 237-245.
    WANG Kaiyao and XIAO Yang. Cognitive MIMO system based on protograph LDPC codes in television band[J]. Journal of Applied Sciences, 2014, 32(3): 237-245.
    STOJANOVIC M and PREISIG J. Underwater acoustic communication?channels: propagation models and statistical characterization[J]. IEEE Communications Magazine, 2009, 47(1): 84-89.
    STOJANOVIC M. A method for differentially coherent detection of OFDM signals on doppler-distorted channels[C]. 6th IEEE Sensor Array and Multichannel Signal Processing Workshop (SAM), Jerusalem, Israel, 2010: 85-88.
    HE C, HUANG J, and DING Z. A variable-rate spread- spectrum system for underwater acoustic communications [J].?IEEE Journal of?Oceanic Engineering, 2009, 34(4): 624-633.
    VAJAPEYAM M, VEDANTAM S, MITRA U, et al. Distributed space time cooperative schemes for underwater acoustic communications[J]. IEEE Journal on Oceanic Engineering, 2008, 33(4): 489-501.
    CCSDS 131.1-O-2. Experimental specifications, low density parity check codes for use in near-earth and deep space applications[S]. USA, the Consultative Committee for Space Data Systems, 2007.
    WANG K, XIAO Y, and KIM K. Construction of protograph LDPC codes with circular generator matrices[J]. Journal of Systems Engineering and Electronics, 2011, 22(5): 840-847.
    姜明, 王晨. 基于原型图的低码率LDPC码最小和译码算法改进方案[J]. 电子与信息学报, 2010, 32(11): 2781-2784. doi: 10.3724/SP.J.1146.2009.01652.
    JIANG Ming and WANG Chen. An improvement on the min-sum algorithm for low-rate protograph LDPC codes[J]. Journal of Electronics Information Technology, 2010, 32(11): 2781-2784. doi: 10.3724/SP.J.1146.2009.01652.
    CHEN Z, XU X, and CHEN Y. Application of protograph- based LDPC codes in underwater acoustic channels[C]. IEEE International Conference on Signal Processing, Communications and Computing (ICSPCC), Guilin, 2014: 923-927.
    FANG Y, BI G, GUAN Y, et al. A survey on protograph LDPC codes and their applications[J]. IEEE Communications Surveys Tutorials, 2015(99): 1.
    唐怀东, 朱敏, 武岩波. 一种水声通信 Turbo 均衡中的软迭代信道估计算法[J]. 电子与信息学报, 2013, 35(3): 677-682. doi: 10.3724/SP.J.1146.2012.00820.
    TANG Huaidong, ZHU Min, and WU Yanbo. An algorithm of soft iterative channel estimation for Turbo equalization of underwater acoustic communication[J]. Journal of Electronics Information Technology, 2013, 35(3): 677-682. doi: 10.3724/SP.J.1146.2012.00820
    RICHARDSON T J and URBANKE R L. The capacity of low-density parity-check codes under message-passing decoding[J]. IEEE Transactions on Information Theory, 2001, 47(2): 599-618.
    TEN BRINK S, KRAMER G, and ASHIKHMIN A. Design of low-density parity-check codes for modulation and detection[J]. IEEE Transactions on Communications, 2004, 52(4): 670-678.
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出版历程
  • 收稿日期:  2015-04-10
  • 修回日期:  2015-10-15
  • 刊出日期:  2016-01-19

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