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LDPC码在深空通信中的兼容编码技术 被引量:5

Universal encoder for LDPC codes in deep space communications
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摘要 信道编码是提高卫星通信数据传输链路可靠性的关键技术,空间数据系统咨询委员会(CCSDS)标准推荐了1组适用于深空通信的低密度奇偶校验(LDPC)码。针对卫星通信信道的不同需求,设计了1个可以实现CCSDS标准中推荐的适于深空通信的所有LDPC码编码的兼容编码器,从而节省星上硬件资源,提高星载的可靠性和可移植性。利用VHDL语言在FPGA上实现了该编码器,通过仿真验证,表明该编码器在大大节省硬件资源的同时,能够正确完成编码。 Channel code is a key technique in satellite commumcatlons to improve rc.~,, y of communication. The class of Low Density Parity Check(LDPC) codes is recommended by Consultative Committee for Space Data Systems(CCSDS) for application in deep space communication. To meet different requirements of varied space communication channels, a universal encoder that implements all codes in CCSDS is designed. It can save hardware resources and improve intersatellite availability for transplanting Using VHDL language, the encoder is implemented on FPGA with less resources. The simulation results have verified the correction of the encoder.
出处 《信息与电子工程》 2012年第1期18-21,31,共5页 information and electronic engineering
关键词 空间数据系统咨询委员会 低密度奇偶校验码 兼容编码器 FPGA实现 Consultative Committee for Space Data Systems Low Density Parity Check generalencoder FPGA implementation
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  • 1佘方毅.DVB-S2与我国的直播卫星系统[J].广播与电视技术,2005,32(1):73-76. 被引量:6
  • 2李伟.FIR数字滤波器的FPGA实现[J].计算机与数字工程,2007,35(1):163-164. 被引量:5
  • 3MACKAY D J C, NEAL R M. Near shannon limit performance of low density parity check codes[J]. Electro Lett, 1996, 32(18): 1645-1646. 被引量:1
  • 4ETSI. Digital video broadcasting (DVB); second generation framing structure, channel coding and modulation systems for broadcasting, interactive services. News Gathering and other broadband satellite applications[S]. Draft EN 302 307 VI. 1.1. Lueioles France: ETSI, 2004. 被引量:1
  • 5地面数字电视广播传输系统帧结构、信道编码和调制[S].GB20600-2006.北京:中国标准出版社,2006. 被引量:1
  • 6MACKAY D J C. Good error=correcting codes based on very sparse matrices[J]. IEEE Trans Inform Theory, 1999, 45(2): 399-432. 被引量:1
  • 7RICHARDSON T, SHOKROLLAHI A, URBANKE R. Design of capacity-approaching low-density parity-check codes[J]. IEEE Trans Inform Theory, 2001, 47(2): 619-637. 被引量:1
  • 8KOU Y, LIN S, FOSSORIER M. Low-density parity-check codes based on finite geometries: a rediscovery and more[J]. IEEE Trans Infor Theory, 2001, 47(1): 2711-2736. 被引量:1
  • 9LI Z, CHEN L, ZENG L Q, et al.Efficient encoding of Quasi-Cyclic low-density parity-check codes[J]. IEEE Trans Commun, 2006, 54(1): 71-81. 被引量:1
  • 10MYUNG S, YANG K, KIM J. Quasi-Cyclic LDPC codes for fast encoding[J]. IEEE Trans Inform Theory, 2005, 51(8): 2894-2901. 被引量:1

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  • 1顾昕钰,王艺晨,于笑博,牛凯,林家儒,吴伟陵.基于64-QAM的星座图重排高级混合ARQ技术[J].电子与信息学报,2005,27(11):1686-1690. 被引量:8
  • 2马丕明,袁东风,杨秀梅.非规则LDPC码的不等错误保护性能研究[J].通信学报,2005,26(11):132-136. 被引量:7
  • 3Gallager R. Low-Density Parity-Check Codes [J]. IRE Transactions on Information Theory (S0096-1000), 1962, 8(1): 21-28. 被引量:1
  • 4Mackay D. Good Error-Correcting Codes Based on Very Sparse Matrices [J]. IEEE Transactions on Information Theory (S0018-9448), 1999, 45(2): 399-431. 被引量:1
  • 5Djordjevic I, Batshon H. LDPC-Coded OFDM for Heterogeneous Access Optical Networks [J]. IEEE Photonics Journal. (S1943-0655), 2010, 2(4): 611-619. 被引量:1
  • 6Ronghui P, Rongrong C. Application of Nonbinary LDPC Cycle Codes to MIMO Channels [J]. IEEE Transactions on Wireless Communications (S1536-1276), 2008, 7(6): 2020-2026. 被引量:1
  • 7De Fez I, Fraile F, Belda R. Analysis and Evaluation of Adaptive LDPC AL-FEC Codes for Content Download Services [J]. IEEE Transactions on Multimedia (S1520-9210), 2012, 14(3): 641-650. 被引量:1
  • 8Yu K, Shu L, Marc P. Low-Density Parity-Check Codes Based on Finite Geometries: a Rediscovery and New Results [J]. IEEETransactions on Information Theory (S0018-9448), 2001, 47(7): 2711-2736. 被引量:1
  • 9Kudekar S, Richardson T, Urbanke R. Threshold Saturation via Spatial Coupling: Why Convolutional LDPC Ensembles Perform so well over the BEC [J]. IEEE Transactions on Information Theory (S0018-9448), 2011, 57(2): 803-834. 被引量:1
  • 10Kim J, Junho C, Wonyong S. VLSI Implementation of a High-Throughput Soft-Bit-Flipping Decoder for Geometric LDPC Codes [J]. IEEE Transactions on Circuits and Systems I: Regular Papers (S1549-8328), 2010, 57(5): 1083-1094. 被引量:1

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