任意离散无存储器信道上非二进制LDPC码的退出图

A. Bennatan, D. Burshtein
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引用次数: 1

摘要

我们考虑在GF(q)上的coset LDPC码,设计用于任意信道(特别是非二进制和非对称信道)。我们证明了随机选择GF(q)奇偶校验矩阵的非零元素对解码器产生的信息密度具有置换不变性。我们使用这个性质来证明,在高斯近似下,向量消息的整个q - 1维分布由单个标量参数描述。我们应用这个结果为我们的代码开发EXIT图表。我们使用适当设计的信号星座来获得可观的整形增益。仿真结果表明,我们的码在短块长度下优于多级码。我们还介绍了在无约束香农极限(即不限于任何信号星座)的0.56 dB下,频谱效率为6比特/秒/赫兹的AWGN信道的结果
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EXIT charts for non-binary LDPC codes over arbitrary discrete-memoryless channels
We consider coset LDPC codes over GF(q), designed for use over arbitrary channels (particularly nonbinary and asymmetric 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 messages produced by the decoder. We use this property to show that under a Gaussian approximation, the entire q - 1 dimensional distribution of the vector messages is described by a single scalar parameter. We apply this result to develop 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 results for the AWGN channel at 0.56 dB of the unconstrained Shannon limit (i.e. not restricted to any signal constellation) at a spectral efficiency of 6 bits/s/Hz
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