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Joint Non-Binary LDPC-BICM and Network Coding with Iterative Decoding for the Multiple Access Relay Channel

机译:与多址继电器信道的迭代解码联合非二元LDPC-BICM和网络编码

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In this paper we present a novel joint network-channel coding scheme for the time-division Multiple Access Relay Channel (MARC), which combines Bit-Interleaved Coded Modulation with iterative decoding (BICM-ID) based on non-binary Low-Density Parity Check (LDPC) codes, along with the linear combination of blocks of data at the relay. The common receiver iteratively exchanges soft information between a joint soft demapper and the LDPC decoder associated to the transmitting nodes. The performance of the proposed system is compared, in terms of Frame Error Rate (FER) and through intensive Monte Carlo simulations, with the corresponding theoretical outage rate for different values of the spectral efficiency ρ_s of the overall setup. Two main conclusions are drawn: 1) small FER degradation is obtained as p_s increases; and 2) no diversity is lost with respect to the theoretical outage rate.
机译:在本文中,我们提出了一种用于时分多址中继信道(MARC)的新颖的联合网络信道编码方案,其基于非二进制低密度奇偶校验将比特交织编码调制与迭代解码(BICM-ID)组合检查(LDPC)代码,以及继电器的数据块的线性组合。公共接收器迭代地在关节软解映射器和与发送节点相关联的LDPC解码器之间交换软信息。在帧误差率(FER)和密集的Monte Carlo模拟方面,将所提出的系统的性能进行比较,具有相应的理论中断率,用于整体设置的频谱效率ρ_的不同值。绘制了两个主要结论:1)获得小的FER降解,因为P_S增加; 2)对理论中断率没有多样性损失。

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