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Editor-in-Chief

Prof. Maode Ma
College of Engineering, Qatar University, Doha, Qatar


I'm very happy and honored to take on the position of editor-in-chief of JCM, which is a high-quality journal with potential and I'll try my every effort to bring JCM to a next level...[Read More]

Home >Published Issues >2016 >Volume 11, No. 3, March 2016 >

Low Rate QC LDPC Codes with Reconfigurable Structures for Space Information Networks

Jianrong Bao1,2, Xiqi Gao1, Xiaorong Xu2, Rui Guo2, andBin Jiang2
1. National Mobile Communications Research Laboratory, Southeast University, Nanjing, P.R. China
2. School of Communication Engineering, Hangzhou Dianzi University, Hangzhou, P.R. China

Abstract—This paper presents the construction of the efficient low rate Quasi-Cyclic (QC) Low-Density Parity-Check (LDPC) codes and their reconfigurable structures for space information networks. The code is firstly produced by a seed Accumulate-Repeat-Accumulate (ARA) protograph and then extended to a QC generalized LDPC code, where a parity check node pair is replaced with a more powerful pre-coding Hamming node. The code matrix is optimized by both the Progressive Edge progressive (PEG) and the QC oriented modified approximate cycle extrinsic message degree (QC-MACE) algorithm. The QC form in the code saves much storage and reduces coding complexity greatly. The reconfigurable code structure is also given and it can be used in variable space channels. Simulation results show that the proposed code obtains 0.05 dB gain and has better error floor, when compared to the Turbo code in the Consultative Committee for Space Data Systems (CCSDS) with same parameters at a Bit-Error-Rate (BER) of 10−5. And the coding gain is also about 0.1 dB over that of the currently low rate and short QC LDPC codes at a BER of 10−5. Besides, it has good features of low decoding complexity and low latency and so on.

Index Terms—QC LDPC codes, protograph, PEG, QC-MACE

Cite: Jianrong Bao, Xiqi Gao, Xiaorong Xu, Rui Guo, and Bin Jiang, “Low Rate QC LDPC Codes with Reconfigurable Structures for Space Information Networks," Journal of Communications, vol. 11, no. 3, pp. 255-262, 2016. Doi: 10.12720/jcm.11.3.255-262

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