DocumentCode
3603704
Title
Two-Mode Reed–Solomon Decoder Using A Simplified Step-by-Step Algorithm
Author
Chu Yu ; Yu-Shan Su
Author_Institution
Dept. of Electron. Eng., Nat. Ilan Univ., Ilan, Taiwan
Volume
62
Issue
11
fYear
2015
Firstpage
1093
Lastpage
1097
Abstract
Reed-Solomon (RS) codes are a type of forward error correction (FEC) coding that is highly efficient at combating burst errors in received messages. This efficiency has led to its widespread application in error correction in the head tag, often in combination with other channel coders for the construction of robust FEC coding. This brief outlines the design and implementation of a two-mode RS decoder using a simplified step-by-step (SS) algorithm for (255, 239) and (204, 188) RS codes. Calculation of the syndrome determinant in the RS decoder is achieved through Gaussian elimination using a 1-D systolic array with hardware architecture of low complexity, ideally suited for the higherdimensional matrices used in SS algorithms. The proposed twomode RS decoder is easily modified with regard to the delay-line buffer size, the delta accumulation and summation module, and the control unit. A two-mode RS decoder with approximately 32 K gates was fabricated using 180-nm complementary metal- oxide-semiconductor technology. Evaluation results confirm that the proposed device consumes only 57 mW at 166 MHz.
Keywords
Gaussian processes; Reed-Solomon codes; channel coding; delay lines; error correction codes; forward error correction; systolic arrays; 1-D systolic array; Gaussian elimination; Reed-Solomon codes; burst errors; channel coders; complementary metal-oxide-semiconductor technology; control unit; delay-line buffer size; delta accumulation; forward error correction coding; frequency 166 MHz; hardware architecture; low complexity; power 57 mW; received messages; simplified step-by-step algorithm; size 180 nm; summation module; syndrome determinant; two-mode Reed-Solomon decoder; Algorithm design and analysis; Arrays; Clocks; Decoding; Forward error correction; Hardware; Forward error correction (FEC); Gaussian elimination; Reed–Solomon (RS) decoder; Reed???Solomon (RS) decoder; forward error correction (FEC); step-by-step (SS) algorithm; step-by-step algorithm;
fLanguage
English
Journal_Title
Circuits and Systems II: Express Briefs, IEEE Transactions on
Publisher
ieee
ISSN
1549-7747
Type
jour
DOI
10.1109/TCSII.2015.2456094
Filename
7156087
Link To Document