Title :
A simple scheme for correcting blocks of multiple adjacent bit errors
Author :
Cotrina-Navau, J. ; Fernandez, M.
Author_Institution :
Dept. d´Eng. Telematica, Univ. Politec. de Catalunya, Barcelona, Spain
Abstract :
There are several practical scenarios where the behavior of a communications channel can be somehow predictable. For instance, in nanometric technologies the increase of integration density makes memory devices more sensitive to radiation effects that can cause multiple bit upsets (MBUs) in adjacent cells. In this paper we use random error correcting codes to deal with such particular channels. We propose a very simple and efficient scheme for correcting blocks of adjacent errors. Our approach consists in applying a transformation to the code in order to adapt it to the channel. Undoing the transformation at the receiving end converts blocks of adjacent errors (of any length) into low weight error vectors that will subsequently be corrected by a bounded distance decoding algorithm. The proposed method can be applied, without noticeable loss of performance, to any existing encoding-decoding scheme. Moreover, and in a list decoding fashion, we obtain stronger results for binary cyclic codes.
Keywords :
binary codes; cyclic codes; decoding; error correction codes; random codes; telecommunication channels; vectors; adjacent errors; binary cyclic codes; bounded distance decoding algorithm; communication channel; correcting blocks; encoding-decoding scheme; list decoding fashion; low weight error vectors; random error correcting codes; receiving end; Australia; Decoding; Encoding; Error correction codes; Polynomials; Shift registers; Vectors;
Conference_Titel :
Information Theory and its Applications (ISITA), 2014 International Symposium on
Conference_Location :
Melbourne, VIC