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A Modified Bit-Flipping Decoding for Low-density Parity-check Codes Based on Weighted Violation

Hui Han

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Abstract

This paper proposes a modified weighted violation-based bit-flipping decoding algorithm for LDPC codes, and no soft information is required for decoding, Futhermore, in order to reduce the average number of iterations and decoding complexity, the threshold of judgement is set. Simulation results show that this modified algorithm could achieve much less number of iterations and better performance as compared with several soft-decision bit-flipping decoding algorithms for LDPC codes with large girth and low code rate.

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What this paper is about

This paper proposes a modified weighted violation-based bit-flipping decoding algorithm for LDPC codes, and no soft information is required for decoding, Futhermore, in order to reduce the average number of iterations and decoding complexity, the threshold of judgement is set. Simulation results show that this modified algorithm could achieve much less number of iterations and better performance as compared with several soft-decision bit-flipping decoding algorithms for LDPC codes with large girth and low code rate.

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Available abstract

This paper proposes a modified weighted violation-based bit-flipping decoding algorithm for LDPC codes, and no soft information is required for decoding, Futhermore, in order to reduce the average number of iterations and decoding complexity, the threshold of judgement is set. Simulation results show that this modified algorithm could achieve much less number of iterations and better performance as compared with several soft-decision bit-flipping decoding algorithms for LDPC codes with large girth and low code rate.

Key concepts: Decoding methods, Computer science, Low-density parity-check code, Algorithm, Parity bit, Berlekamp–Welch algorithm, List decoding, Set (abstract data type)

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