Title :
On the Efficiency of Shortened Cyclic Single-Burst-Correcting Codes
Author :
Villalba, Luis Javier García ; Cortez, José René Fuentes ; Blaum, Mario
Author_Institution :
Dept. of Software Eng. & Artificial Intell., Univ. Complutense de Madrid (UCM), Madrid, Spain
fDate :
7/1/2010 12:00:00 AM
Abstract :
Shortened cyclic codes that are capable of correcting up to a single burst of errors are considered. The efficiency of such codes has been analized by how well they approximate the Reiger bound, i.e., by the burst-correcting efficiency of the code. Although the efficiency is still an important parameter, it is shown that this one is not necessarily the most important consideration when choosing a single-burst-correcting code. It is shown that in some natural practical applications (like in a Gilbert-Elliot channel), it is more important to optimize the rate of the code with respect to its guard space, a goal closely related to the Gallager bound. The concepts of all-around, non-all around and partial all-around single-burst-correcting codes are introduced and illustrated with examples, some from existing constructions and some from new ones. Tables are presented showing that in many cases the new codes have better parameters than the existing ones for the same burst-correcting capability.
Keywords :
cyclic codes; error correction codes; Gallager bound; Reiger bound; burst correcting efficiency; shortened cyclic single burst correcting codes; Artificial intelligence; Block codes; Computer science; Computer security; Convolutional codes; Error correction codes; Fires; Helium; Scholarships; Software engineering; All-around (AA) bursts; Gallager bound; Gilbert–Elliot channel; Reiger bound; burst errors; cyclic bursts; cyclic codes; guard space; shortened cyclic codes; single burst-correcting codes; wrap-around bursts;
Journal_Title :
Information Theory, IEEE Transactions on
DOI :
10.1109/TIT.2010.2048454