Title :
Randomly punctured spatially coupled LDPC codes
Author :
Mitchell, David ; Lentmaier, Michael ; Pusane, Ali E. ; Costello, Daniel
Author_Institution :
Dept. of Electr. Eng., Univ. of Notre Dame, Notre Dame, IN, USA
Abstract :
In this paper, we study random puncturing of protograph-based spatially coupled low-density parity-check (SC-LDPC) code ensembles. We show that, with respect to iterative decoding threshold, the strength and suitability of an LDPC code ensemble for random puncturing over the binary erasure channel (BEC) is completely determined by a single constant θ ≥ 1 that depends only on the rate and iterative decoding threshold of the mother code ensemble. We then use this analysis to show that randomly punctured SC-LDPC code ensembles display near capacity thresholds for a wide range of rates. We also perform an asymptotic minimum distance analysis and show that, like the SC-LDPC mother code ensemble, the punctured SC-LDPC code ensembles are also asymptotically good. Finally, we present some simulation results that confirm the excellent decoding performance promised by the asymptotic results.
Keywords :
channel coding; iterative decoding; parity check codes; random codes; SC-LDPC mother code ensemble; asymptotic minimum distance analysis; binary erasure channel; iterative decoding threshold; near capacity thresholds; protograph-based spatially coupled low-density parity-check code; random puncturing; Block codes; Couplings; Decoding; Iterative decoding; Spectral shape; Turbo codes;
Conference_Titel :
Turbo Codes and Iterative Information Processing (ISTC), 2014 8th International Symposium on
Conference_Location :
Bremen
DOI :
10.1109/ISTC.2014.6955074