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Improving BER Performance of LDPC Codes based on Intermediate Decoding Results

机译:基于中间解码结果,提高LDPC代码的BER性能

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The paper presents a novel approach to reduce the bit error rate (BER) in iterative belief propagation (BP) decoding of low density parity check (LDPC) codes. The behavior of the BP algorithm is first investigated as a function of number of decoder iterations, and it is shown that typical uncorrected error patterns can be classified into 3 categories: oscillating, nearly-constant, or random-like, with a predominance of oscillating patterns at high Signal-to-Noise (SNR) values. A proposed decoder modification is then introduced based on tracking the number of failed parity check equations in the intermediate decoding iterations, rather than relying on the final decoder output (after reaching the maximum number of iterations). Simulation results with a rate ?? (1024,512) progressive edge-growth (PEG) LDPC code show that the proposed modification can decrease the BER by as much as 10-to-40%, particularly for high SNR values.
机译:本文提出了一种新的方法来减少低密度奇偶校验(LDPC)代码的迭代信仰传播(BP)解码中的误码率(BER)。首先将BP算法的行为作为解码器迭代的数量进行研究,并且显示典型的未校正错误模式可以分类为3类:振荡,几乎常数或随机,具有振荡的主要振荡高信噪比(SNR)值的图案。然后基于跟踪中间解码迭代中的失败奇偶校验方程的数量而不是依赖于最终解码器输出(在达到最大迭代次数之后)之后引入提出的解码器修改。仿真结果具有速率?? (1024,512)逐步边缘增长(PEG)LDPC代码表明,所提出的修改可以将BER减少多达10至40%,特别是对于高SNR值。

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