We study the performance of Low Density Parity Check (LDPC) error-correcting codes using the methods of statistical physics. LDPC codes are based on the generation of codewords using Boolean sums of the original message bits by employing two randomly-constructed sparse matrices. These codes can be mapped onto Ising spin models and studied using common methods of statistical physics. We examine various regular constructions and obtain insight into their theoretical and practical limitations. We also briefly report on results obtained for irregular code constructions, for codes with non-binary alphabet, and on how a finite system size effects the error probability
We present a theoretical method for a direct evaluation of the average error exponent in Gallager er...
PACS. 89.90.+n – Other topics in areas of applied and interdisciplinary physics. PACS. 89.70.+c – In...
Low Density Parity Check codes, LDPCs for short, are a family of codes which have shown near optimal...
We study the performance of Low Density Parity Check (LDPC) error-correcting codes using the methods...
We review recent theoretical progress on the statistical mechanics of error correcting codes, focusi...
We review recent theoretical progress on the statistical mechanics of error correcting codes, focusi...
The modem digital communication systems are made transmission reliable by employing error correction...
The modem digital communication systems are made transmission reliable by employing error correction...
We present a theoretical method for a direct evaluation of the average and reliability error exponen...
We present a theoretical method for a direct evaluation of the average and reliability error exponen...
A variation of low-density parity check (LDPC) error-correcting codes defined over Galois fields (GF...
A variation of low-density parity check (LDPC) error-correcting codes defined over Galois fields (GF...
A variation of low-density parity check (LDPC) error-correcting codes defined over Galois fields (GF...
We determine the critical noise level for decoding low density parity check error correcting codes b...
We present a theoretical method for a direct evaluation of the average error exponent in Gallager er...
We present a theoretical method for a direct evaluation of the average error exponent in Gallager er...
PACS. 89.90.+n – Other topics in areas of applied and interdisciplinary physics. PACS. 89.70.+c – In...
Low Density Parity Check codes, LDPCs for short, are a family of codes which have shown near optimal...
We study the performance of Low Density Parity Check (LDPC) error-correcting codes using the methods...
We review recent theoretical progress on the statistical mechanics of error correcting codes, focusi...
We review recent theoretical progress on the statistical mechanics of error correcting codes, focusi...
The modem digital communication systems are made transmission reliable by employing error correction...
The modem digital communication systems are made transmission reliable by employing error correction...
We present a theoretical method for a direct evaluation of the average and reliability error exponen...
We present a theoretical method for a direct evaluation of the average and reliability error exponen...
A variation of low-density parity check (LDPC) error-correcting codes defined over Galois fields (GF...
A variation of low-density parity check (LDPC) error-correcting codes defined over Galois fields (GF...
A variation of low-density parity check (LDPC) error-correcting codes defined over Galois fields (GF...
We determine the critical noise level for decoding low density parity check error correcting codes b...
We present a theoretical method for a direct evaluation of the average error exponent in Gallager er...
We present a theoretical method for a direct evaluation of the average error exponent in Gallager er...
PACS. 89.90.+n – Other topics in areas of applied and interdisciplinary physics. PACS. 89.70.+c – In...
Low Density Parity Check codes, LDPCs for short, are a family of codes which have shown near optimal...