Title :
Spectral Shape of Doubly-Generalized LDPC Codes: Efficient and Exact Evaluation
Author :
Flanagan, Mark F. ; Paolini, Enrico ; Chiani, Marco ; Fossorier, Marc P. C.
Author_Institution :
Sch. of Electr., Electron. & Commun. Eng., Univ. Coll. Dublin, Dublin, Ireland
Abstract :
This paper analyzes the asymptotic exponent of the weight spectrum for irregular doubly-generalized LDPC (D-GLDPC) codes. In the process, an efficient numerical technique for its evaluation is presented, involving the solution of a 4 × 4 system of polynomial equations. The expression is consistent with previous results, including the case where the normalized weight or stopping set size tends to zero. The spectral shape is shown to admit a particularly simple form in the special case where all variable nodes are repetition codes of the same degree, a case which includes Tanner codes; for this case it is also shown how certain symmetry properties of the local weight distribution at the CNs induce a symmetry in the overall weight spectral shape function. Finally, using these new results, weight and stopping set size spectral shapes are evaluated for some example generalized and doubly-generalized LDPC code ensembles.
Keywords :
parity check codes; Tanner codes; asymptotic exponent; certain symmetry property; doubly-generalized LDPC code ensemble; generalized LDPC code ensemble; irregular D-GLDPC code; irregular doubly-generalized LDPC code; local weight distribution; normalized weight; numerical technique; overall weight spectral shape function; polynomial equation; repetition codes; spectral shape; stopping set size spectral shapes; variable nodes; weight spectrum; Block codes; Decoding; Parity check codes; Polynomials; Spectral shape; Doubly-generalized LDPC codes; irregular code ensembles; spectral shape; stopping set size distribution; weight distribution;
Journal_Title :
Information Theory, IEEE Transactions on
DOI :
10.1109/TIT.2013.2262494