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Low density parity check codes for the relay channel

机译:中继通道的低密度奇偶校验码

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We propose Low Density Parity Check (LDPC) code designs for the half-duplex relay channel. Our designs are based on the information theoretic random coding scheme for decode-and-forward relaying. The source transmission is decoded with the help of side information in the form of additional parity bits from the relay. We derive the exact relationships that the component LDPC code profiles in the relay coding scheme must satisfy. These relationships act as constraints for the density evolution algorithm which is used to search for good relay code profiles. To speed up optimization, we outline a Gaussian approximation of density evolution for the relay channel. The asymptotic noise thresholds of the discovered relay code profiles are a fraction of a decibel away from the achievable lower bound for decode-and-forward relaying. With random component LDPC codes, the overall relay coding scheme performs within 1.2 dB of the theoretical limit
机译:我们为半双工中继信道提出了低密度奇偶校验(LDPC)代码设计。我们的设计基于用于解码转发中继的信息理论随机编码方案。借助辅助信息,以来自中继的其他奇偶校验位的形式对源传输进行解码。我们得出中继编码方案中的组件LDPC码配置文件必须满足的确切关系。这些关系充当密度演化算法的约束,该算法用于搜索良好的中继码配置文件。为了加快优化速度,我们概述了中继通道密度变化的高斯近似。所发现的中继码配置文件的渐近噪声阈值距离解码转发中继所能达到的下限只有几分贝。使用随机分量LDPC码,整个中继编码方案在理论极限的1.2 dB之内执行

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