Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Complexity Analysis of Reed-Solomon Decoding over GF(2^m) Without Using Syndromes

Record type:

paper
Creator:
CheYan
Host:avatar
For the majority of the applications of Reed-Solomon (RS) codes, hard decision decoding is based on syndromes. Recently, there has been renewed interest in decoding RS codes without using syndromes. In this paper, we investigate the complexity of syndromeless decoding for RS codes, and compare it to that of syndrome-based decoding. Aiming to provide guidelines to practical applications, our complexity analysis differs in several aspects from existing asymptotic complexity analysis, which is typically based on multiplicative fast Fourier transform (FFT) techniques and is usually in big O notation. First, we focus on RS codes over characteristic-2 fields, over which some multiplicative FFT techniques are not applicable. Secondly, due to moderate block lengths of RS codes in practice, our analysis is complete since all terms in the complexities are accounted for. Finally, in addition to fast implementation using additive FFT techniques, we also consider direct implementation, which is still relevant for RS codes with moderate lengths. Comparing the complexities of both syndromeless and syndrome-based decoding algorithms based on direct and fast implementations, we show that syndromeless decoding algorithms have higher complexities than syndrome-based ones for high rate RS codes regardless of the implementation. Both errors-only and errors-and-erasures decoding are considered in this paper. We also derive tighter bounds on the complexities of fast polynomial multiplications based on Cantor's approach and the fast extended Euclidean algorithm. 11 pages, submitted to EURASIP Journal on Wireless Communications and Networking

Visit

arxiv.org

Tags

Information TheoryComputational ComplexityData Structures and Algorithms

Similar

Decoding Southern African Folktales using Hylistic AnalysisUsing the isiZulu GF Resource Grammar for morphological annotationM-Walk: Learning to Walk over Graphs using Monte Carlo Tree SearchOptimization of NeQuick 2 TEC Predictions over Nigeria using Solar FluxIrene Reed, files LauretteM/gf-bantu-resources

Decoding Southern African Folktales using Hylistic Analysis

In this submission, the potential of hylistic analysis for the domain of Southern African folklore i

Using the isiZulu GF Resource Grammar for morphological annotation

The isiZulu GF Resource Grammar (ZRG) enables syntactic parsing using the GF runtime system. In orde

M-Walk: Learning to Walk over Graphs using Monte Carlo Tree Search

Learning to walk over a graph towards a target node for a given query and a source node is an import

Optimization of NeQuick 2 TEC Predictions over Nigeria using Solar Flux

Irene Reed, files

File boxes 01 to 33: Ts. and ms. files including academic work on Central Alaskan Yup'ik, the Eskimo

LauretteM/gf-bantu-resources

Support for GF grammars for the South African Bantu languages # Enabling Localised Language Technol