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Near capacity LDPC coded MU-BICM-ID for 5G

机译:适用于5G的近容量LDPC编码MU-BICM-ID

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摘要

In 5th generation (5G) wireless communication networks, non-orthogonal multiple access (NOMA) is a key technique for supporting massive connectivity and high spectral efficiency. In NOMA systems, the signals sent by multiple users are superimposed at the receiver, which is a multiple access channel (MAC) in information-theoretic perspective. In this paper, we propose near-capacity multi-user bit-interleaved coded modulation with iterative demapping (MU-BICM-ID) scheme for two-user Gaussian multiple-access channel (GMAC), especially for high spectral efficiency scenarios. To retrieve the shaping loss, we suggest to use amplitude phase shift keying (APSK) constellation instead of conventional quadrature amplitude modulation (QAM) constellation. Furthermore, we disclose the fact that the low-density parity-check (LDPC) code optimized for point-to-point is not suitable for GMAC, and therefore we propose and optimize Raptor-like LDPC code for GMAC. Via extrinsic information transfer (EXIT) chart analysis as well as bit-error rate (BER) simulation, we illustrate the near-capacity performance of the proposed scheme.
机译:在第五代(5G)无线通信网络中,非正交多址访问(NOMA)是支持大规模连接和高频谱效率的关键技术。在NOMA系统中,由多个用户发送的信号被叠加在接收器上,从信息论的角度来看,该接收器是一个多路访问信道(MAC)。在本文中,我们为两用户高斯多路访问信道(GMAC)提出了具有迭代解映射(MU-BICM-ID)方案的近容量多用户比特交织编码调制,尤其是在高频谱效率的情况下。要检索成形损失,我们建议使用幅度相移键控(APSK)星座,而不是常规的正交幅度调制(QAM)星座。此外,我们披露了一个事实,即针对点对点优化的低密度奇偶校验(LDPC)代码不适合GMAC,因此我们针对GMAC提出并优化了类似Raptor的LDPC代码。通过外部信息传输(EXIT)图表分析以及误码率(BER)仿真,我们说明了该方案的近容量性能。

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