Journal Article10.1109/T-WC.2008.070615
Reduced Complexity Interpolation for List Decoding Hermitian Codes
TL;DR: This paper shows list decoding algorithm can achieve significant coding gain over the conventional unique decoding algorithm and presents a modified complexity reducing interpolation algorithm.
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Abstract: List decoding Hermitian codes using the Guruswami-Sudan (GS) algorithm can correct errors beyond half the designed minimum distance. It consists of two processes: interpolation and factorisation. By first defining a Hermitian curve, these processes can be implemented with an iterative polynomial construction algorithm and a recursive coefficient search algorithm respectively. To improve the efficiency of list decoding Hermitian codes, this paper presents two contributions to reduce the interpolation complexity. First, in order to simplify the calculation of a polynomialiquests zero condition during the iterative interpolation, we propose an algorithm to determine the corresponding coefficients between the pole basis monomials and zero basis functions of a Hermitian curve. Second, we propose a modified complexity reducing interpolation algorithm. This scheme identifies any unnecessary polynomials during iterations and eliminates them to improve the interpolation efficiency. Due to the above complexity reducing modifications, list decoding long Hermitian codes with higher interpolation multiplicity becomes feasible. This paper shows list decoding algorithm can achieve significant coding gain over the conventional unique decoding algorithm.
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Citations
Progressive Algebraic Soft-Decision Decoding of Reed-Solomon Codes
Li Chen,Siyun Tang,Xiao Ma +2 more
TL;DR: A progressive ASD (PASD) algorithm that enables the conventional ASD algorithm to perform decoding with an adjustable designed factorization output list size (OLS) leading to an incremental computation for the interpolation and an enhanced error-correction capability.
29
Symbol-Level Stochastic Chase Decoding of Reed-Solomon and BCH Codes
Hossein Mani,Saied Hemati +1 more
TL;DR: The symbol-level-stochastic Chase decoding algorithm (S-SCA) was proposed in this paper for Reed-Solomon (RS) and Bose-Chaudhuri-Hocquenghem (BCH) codes.
Soft decoding of algebraic–geometric codes using Koetter-Vardy algorithm
Li Chen,R.A. Carrasco +1 more
TL;DR: The first soft-decision decoding algorithm for algebraic-geometric codes is presented, developed based on the Koetter-Vardy algorithm, which was proposed for the decoding of Reed-Solomon codes.
8
Iterative soft-decision decoding of Hermitian codes
Li Chen
- 01 Sep 2012
TL;DR: Performance analysis shows the proposed iterative decoding algorithm outperforms both the existing decoding approaches for Hermitian codes and the ABP-KV decoding of Reed-Solomon (RS) codes.
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Iterative Soft-Decision Decoding of Hermitian Codes
TL;DR: Performance analysis shows the proposed iterative decoding algorithm outperforms both the existing decoding approaches for Hermitian codes and the ABP-KV decoding of Reed-Solomon (RS) codes.
4
References
Improved decoding of Reed-Solomon and algebraic-geometry codes
Venkatesan Guruswami,Madhu Sudan +1 more
TL;DR: An improved list decoding algorithm for decoding Reed-Solomon codes and alternant codes and algebraic-geometry codes is presented and a solution to a weighted curve-fitting problem is presented, which may be of use in soft-decision decoding algorithms for Reed- Solomon codes.
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Decoding of Reed Solomon Codes beyond the Error-Correction Bound
TL;DR: To the best of the knowledge, this is the first efficient (i.e., polynomial time bounded) algorithm which provides error recovery capability beyond the error-correction bound of a code for any efficient code.
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Algebraic-Geometric Codes
Michael A. Tsfasman,S.G. Vladut +1 more
- 30 Apr 1991
TL;DR: In this article, an AG-Codes and their parameters and constructions are compared with those of binary codes from AG-codes, as well as asymptotic bounds.
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Improved decoding of Reed-Solomon and algebraic-geometric codes
Venkatesan Guruswami,Madhu Sudan +1 more
- 08 Nov 1998
TL;DR: An improved list decoding algorithm for decoding Reed-Solomon codes and alternant codes and algebraic-geometric codes is presented, including a solution to a weighted curve fitting problem, which is of use in soft-decision decoding algorithms for Reed- Solomon codes.
Efficient decoding of Reed-Solomon codes beyond half the minimum distance
Ron M. Roth,G. Ruckenstein +1 more
- 16 Aug 1998
TL;DR: A list decoding algorithm is presented for [n,k] Reed-Solomon (RS) codes over GF(q), which is capable of correcting more than [(n-k)/2] errors and improves on the time complexity O(n/sup 3/) needed for solving the equations of Sudan's algorithm by a naive Gaussian elimination.
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