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Researches on non-orthogonal multiple access in multiple-antenna 5G relaying networks

机译:多天线5G中继网络中非正交多址接入的研究

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Non-orthogonal multiple access (NOMA), which is an effective solution to improve spectral efficiency, has been considered as an emerging candidate for the fifth generation (5G) multiple access. In this paper, the authors mainly study a NOMA-based multiple-antenna relaying network over Nakagami-m fading channels. In order to measure the performance of the system, the exact outage probability and the ergodic sum rate of the system are derived and the diversity orders of the users are obtained by analyzing the asymptotic expression for the outage probability. Furthermore, due to the complexity of expression for the ergodic sum rate, the authors derive the upper bound of the ergodic sum rate. Finally, by carrying out a series of experimental simulations, the authors prove the correctness of the above theoretical derivations, and through the comparison of NOMA and orthogonal multiple access (OMA), it is found that NOMA can provide better spectral efficiency and user fairness.
机译:非正交多址访问(NOMA)是提高频谱效率的有效解决方案,已被认为是第五代(5G)多址访问的新兴选择。在本文中,作者主要研究了在Nakagami-m衰落信道上基于NOMA的多天线中继网络。为了衡量系统的性能,推导了系统的确切停机概率和遍历总速率,并通过分析停机概率的渐近表达式来获得用户的分集阶数。此外,由于遍历总和率表达的复杂性,作者得出了遍历总和率的上限。最后,通过一系列的实验仿真,作者证明了上述理论推导的正确性,并且通过将NOMA与正交多址(OMA)进行比较,发现NOMA可以提供更好的频谱效率和用户公平性。

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