Title :
Correction of independent errors and byte-type errors in communication systems using structured codes
Author_Institution :
Sevastopol Nat. Tech. Univ., Ukraine
Abstract :
Current publications devoted to noise-proof coding, declare that byte-type error detection and correction are particularly effective. However, independent errors up to t-multiplicity may appear in transmitted code-words. Taking account the above, it is necessary to develop codes, to enable the correction of the above error types with fine veracity of the information transmitted, possessing simple decoding algorithms, and not requiring delay of data exchange. This paper suggests codes, which are able to decode data blocks with q5<10-6 error probability per one symbol at q0=0.05 error probability per one symbol in the received word. These codes are able to correct byte errors of several bytes length. It is evident that such codes possess relatively lower transmission rate than BChH codes.
Keywords :
decoding; error correction codes; error detection codes; error statistics; signal denoising; BChH codes; byte error length; byte-type error detection/correction; code transmission rate; communication system error correction codes; data block error probability; data exchange delays; independent error t-multiplicity; noise-proof coding; received word single symbol error probability; simple decoding algorithms; structured codes; transmitted information veracity; Chromium; Error correction codes; Helium; IEEE catalog; Microwave technology; Organizing;
Conference_Titel :
Microwave and Telecommunication Technology, 2002. CriMiCo 2002. 12th International Conference
Print_ISBN :
966-7968-12-X
DOI :
10.1109/CRMICO.2002.1137224