Tighter decoding reliability bound for Gallager's error-correcting code


Autoria(s): Kabashima, Yoshiyuki; Sazuka, Naoya; Nakamura, Kazutaka; Saad, David
Data(s)

2001

Resumo

Statistical physics is employed to evaluate the performance of error-correcting codes in the case of finite message length for an ensemble of Gallager's error correcting codes. We follow Gallager's approach of upper-bounding the average decoding error rate, but invoke the replica method to reproduce the tightest general bound to date, and to improve on the most accurate zero-error noise level threshold reported in the literature. The relation between the methods used and those presented in the information theory literature are explored.

Formato

application/pdf

Identificador

http://eprints.aston.ac.uk/1299/1/NCRG_2001_007.pdf

Kabashima, Yoshiyuki; Sazuka, Naoya; Nakamura, Kazutaka and Saad, David (2001). Tighter decoding reliability bound for Gallager's error-correcting code. Physical Review E, 64 (4), pp. 1-4.

Relação

http://eprints.aston.ac.uk/1299/

Tipo

Article

PeerReviewed