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The error performance analysis of the decode-forward relay-aided-NOMA systems and a power allocation scheme for user fairness

机译:解码转发中继辅助纳米系统的误差性能分析和用户公平的电力分配方案

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摘要

Non-orthogonal multiple access (NOMA) is a major candidate technology for the future radio networks due to its potential to have high spectral efficiency and to support massive connections. It is also an important advantage for the NOMA to be very compatible with the other physical layer techniques. The relay-aided-NOMA which consists of the interplay between cooperative communication and NOMA, offers very large coverage area besides the high spectral efficiency and the massive connectivity. Hence, the relay-aided-NOMA has great recent attention. Most of these studies are devoted to reveal outage probability and the overall system capacity performances of the systems. However, the bit error performances have been ignored. In this paper, theoretical end-to-end (E2E) average bit error probability (ABEP) expressions are derived for the relay-aided-NOMA using a relay with the decode-forward (DF) protocol. The derived expressions are validated through Monte Carlo simulations. The E2E error performance of the system are examined for different system parameters. Moreover, by considering user fairness in terms of error performance, it is discussed how the optimum power allocation should be done. And finally, a sub-optimum power allocation algorithm is presented according to the proportional fairness index.
机译:非正交多次访问(NOMA)是未来无线电网络的主要候选技术,因为它具有高光谱效率并支持大量连接。对于NOMA与其他物理层技术非常兼容,这也是一个重要的优点。除了高光谱效率和大规模连接之外,由协作通信和NOMA之间的相互作用组成的继电器辅助NOMA提供了非常大的覆盖区域。因此,继电器辅助NOMA最近的关注。这些研究中的大部分都致力于揭示系统的中断概率和整体系统能力性能。但是,忽略了误码性能。在本文中,使用具有解码前进(DF)协议的继电器来导出理论端到端(E2E)平均误码概率(ABEP)表达式。通过Monte Carlo模拟验证衍生的表达式。为不同的系统参数检查系统的E2E错误性能。此外,通过考虑在错误性能方面的用户公平,讨论了应该如何完成最佳功率分配。最后,根据比例公平指数呈现次优电分配算法。

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