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Performance of low density parity check (LDPC) codes with bootstrap decoding algorithm on a fast fading channel

机译:带有Bootstrap解码算法的低密度奇偶校验(LDPC)码在快速衰落信道上的性能

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摘要

Low density parity check (LDPC) codes can be decoded in various ways, namely the bit-flipping (BF) algorithm, the weighted BF (WBF) algorithm and the log-likelihood ratio belief propagation (LLR-BP) algorithm, and so on. These algorithms provide a wide range of tradeoffs among decoding complexity, decoding speed, and error rate performance. Recently, the bootstrapped WBF (BWBF) algorithm has been proposed to improve the error rate performance and the decoding complexity of the WBF algorithm. In this paper, we study the effects of the predetermined threshold /spl alpha/ of the bootstrap step on BER for various LDPC codes. Furthermore, we apply the bootstrap step to the LLR-BP algorithm. We evaluate the BWBF and the bootstrapped LLR-BP (B-LLR-BP) algorithms on a fast fading channel. We show that the optimal threshold depends on the row and column weights of the LDPC codes. We also show that the BWBF algorithm provides a large improvements in both the error rate performance and the decoding complexity on a fast fading channel. Moreover, we show that the LLR-BP algorithm hardly receives the effect of the bootstrap step.
机译:低密度奇偶校验检查(LDPC)代码可以以各种方式解码,即位翻转(BF)算法,加权BF(WBF)算法和日志似然比信仰传播(LLR-BP)算法,等等。这些算法在解码复杂性,解码速度和错误率性能之间提供了广泛的权衡。最近,已经提出了引导的WBF(BWBF)算法来提高WBF算法的误差率性能和解码复杂性。在本文中,我们研究了预定阈值/SPLα/ SPL alpha / Bootstrap步骤对BER的影响,用于各种LDPC代码。此外,我们将引导程序步骤应用于LLR-BP算法。我们在快速衰落通道上评估BWBF和自动启动的LLR-BP(B-LLR-BP)算法。我们表明最佳阈值取决于LDPC代码的行和列权重。我们还表明,BWBF算法在快速衰落通道上的错误率性能和解码复杂性方面提供了大的改进。此外,我们表明LLR-BP算法几乎没有接收到引导步骤的效果。

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