DocumentCode :
12586
Title :
Spatially-Coupled LDPC Codes for Decode-and-Forward Relaying of Two Correlated Sources over the BEC
Author :
Schwandter, Stefan ; Graell i Amat, Alexandre ; Matz, Gerald
Author_Institution :
Grabner Instrum., Ametek Inc., Vienna, Austria
Volume :
62
Issue :
4
fYear :
2014
fDate :
Apr-14
Firstpage :
1324
Lastpage :
1337
Abstract :
We present a decode-and-forward transmission scheme based on spatially-coupled low-density parity-check (SC-LDPC) codes for a network consisting of two (possibly correlated) sources, one relay, and one destination. The links between the nodes are modeled as binary erasure channels. Joint source-channel coding with joint channel decoding is used to exploit the correlation. The relay performs network coding. We derive analytical bounds on the achievable rates for the binary erasure time-division multiple-access relay channel with correlated sources. We then design bilayer SC-LDPC codes and analyze their asymptotic performance for this scenario. We prove analytically that the proposed coding scheme achieves the theoretical limit for symmetric channel conditions and uncorrelated sources. Using density evolution, we furthermore demonstrate that our scheme approaches the theoretical limit also for non-symmetric channel conditions and when the sources are correlated, and we observe the threshold saturation effect that is typical for spatially-coupled systems. Finally, we give simulation results for large block lengths, which validate the DE analysis.
Keywords :
binary codes; combined source-channel coding; decode and forward communication; decoding; network coding; parity check codes; relay networks (telecommunication); time division multiple access; BEC; DE analysis; analytical bounds; asymptotic performance; bilayer code design; binary erasure time-division multiple-access relay channel; correlated sources; decode-and-forward relaying; density evolution; joint channel decoding; joint source-channel coding; low-density parity-check codes; network coding; nonsymmetric channel conditions; spatially-coupled LDPC codes; symmetric channel conditions; threshold saturation effect; Binary codes; Channel coding; Cooperative communication; Decoding; Parity check codes; Relays; Binary erasure channel; cooperative communications; correlated sources; decode-and-forward; distributed coding; relay channel; spatially-coupled low-density parity-check codes; threshold saturation;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2014.020514.130317
Filename :
6750419
Link To Document :
بازگشت