DocumentCode
1755176
Title
Threshold Saturation for Spatially Coupled LDPC and LDGM Codes on BMS Channels
Author
Kumar, Sudhakar ; Young, Aaron J. ; Macris, Nicolas ; Pfister, Henry D.
Author_Institution
Dept. of Electr. & Comput. Eng., Texas A&M Univ., College Station, TX, USA
Volume
60
Issue
12
fYear
2014
fDate
Dec. 2014
Firstpage
7389
Lastpage
7415
Abstract
Spatially-coupled low-density parity-check (LDPC) codes, which were first introduced as LDPC convolutional codes, have been shown to exhibit excellent performance under low-complexity belief-propagation decoding. This phenomenon is now termed threshold saturation via spatial coupling. Spatially-coupled codes have been successfully applied in numerous areas. In particular, it was proven that spatially-coupled regular LDPC codes universally achieve capacity over the class of binary memoryless symmetric (BMS) channels under belief-propagation decoding. Recently, potential functions have been used to simplify threshold saturation proofs for scalar and vector recursions. In this paper, potential functions are used to prove threshold saturation for irregular LDPC and low-density generator-matrix codes on BMS channels, extending the simplified proof technique to BMS channels. The corresponding potential functions are closely related to the average Bethe free entropy of the ensembles in the large-system limit. These functions also appear in statistical physics when the replica method is used to analyze optimal decoding.
Keywords
channel coding; computational complexity; decoding; entropy codes; parity check codes; BMS channels; LDGM codes; binary memoryless symmetric channels; coupled LDPC codes; low-complexity belief-propagation decoding; scalar recursions; spatially-coupled low-density parity-check codes; threshold saturation; vector recursions; Couplings; Decoding; Degradation; Entropy; Iterative decoding; Measurement; Convolutional LDPC codes; density evolution; entropy functional; potential functions; spatial coupling; threshold saturation;
fLanguage
English
Journal_Title
Information Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/TIT.2014.2360692
Filename
6912949
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