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首页> 外文期刊>IEEE Transactions on Information Theory >Design and analysis of nonbinary LDPC codes for arbitrary discrete-memoryless channels
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Design and analysis of nonbinary LDPC codes for arbitrary discrete-memoryless channels

机译:任意离散无内存信道的非二进制LDPC码的设计与分析

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摘要

We present an analysis under the iterative decoding of coset low-density parity-check (LDPC) codes over GF(q), designed for use over arbitrary discrete-memoryless channels (particularly nonbinary and asymmetric channels). We use a random- coset analysis to produce an effect that is similar to output symmetry with binary channels. We show that the random selection of the nonzero elements of the GF(q) parity-check matrix induces a permutation-invariance property on the densities of the decoder messages, which simplifies their analysis and approximation. We generalize several properties, including symmetry and stability from the analysis of binary LDPC codes. We show that under a Gaussian approximation, the entire q-1-dimensional distribution of the vector messages is described by a single scalar parameter (like the distributions of binary LDPC messages). We apply this property to develop extrinsic information transfer (EXIT) charts for our codes. We use appropriately designed signal constellations to obtain substantial shaping gains. Simulation results indicate that our codes outperform multilevel codes at short block lengths. We also present simulation results for the additive white Gaussian noise (AWGN) channel, including results within 0.56 dB of the unrestricted Shannon limit (i.e., not restricted to any signal constellation) at a spectral efficiency of 6 bits/s/Hz.
机译:我们提出了在GF(q)上对陪集低密度奇偶校验(LDPC)码进行迭代解码的分析,该码设计用于任意离散无内存信道(尤其是非二进制和非对称信道)。我们使用随机陪集分析来产生类似于二进制通道输出对称的效果。我们表明,GF(q)奇偶校验矩阵的非零元素的随机选择会在解码器消息的密度上引起排列不变性,从而简化了它们的分析和近似。通过对二进制LDPC码的分析,我们概括了几个属性,包括对称性和稳定性。我们表明,在高斯近似下,矢量消息的整个q-1维分布由单个标量参数(如二进制LDPC消息的分布)描述。我们将此属性应用于为我们的代码开发外部信息传输(EXIT)图表。我们使用适当设计的信号星座图来获取大量的整形增益。仿真结果表明,我们的代码在较短的块长度上胜过多级代码。我们还介绍了加性高斯白噪声(AWGN)通道的仿真结果,包括以6位/秒/赫兹的频谱效率在无限制的Shannon限制(即,不限于任何信号星座)的0.56 dB以内的结果。

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