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New look on relay selection strategies for full-duplex multiple-relay NOMA over Nakagami-m fading channels

机译:NAKAGAMI-M褪色频道全双工多继电器NOMA的中继选择策略

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摘要

By removing the orthogonal use of radio-resources, non-orthogonal multiple access (NOMA) has been introduced to improve the spectral efficiency of fifth generation (5G) and beyond networks. This paper studies the system performance in a dual-hop multi-relay NOMA using decode-and-forward (DF) scheme over Nakagami-m fading channels. A group of NOMA users is considered, i.e. the near and far users which are decided by how strong these related channels are. Specifically, we obtain a closed-form expression of the outage probability of the near/far NOMA users when the several relay selection schemes are adopted for selecting the best among M intermediate relays. As main finding, this paper introduces three strategies including two-stage relay selection, max-min and power allocation based relay selection schemes. As main benefit, the NOMA users are considered to employ selection combining technique in order to improve signal transmissions for an increased reliability in the context of massive connections in 5G wireless communications. By conducting numerical simulations, we evaluate the impact of the number of intermediate relays, the NOMA power allocation factor, and the Nakagami-m fading severity parameter on the outage performance of the NOMA users. Finally, the outage probability along with throughout in delay-limited transmission mode are provided via numerical results and the necessary comparisons are provided.
机译:通过去除无线电资源的正交使用,已经引入了非正交的多址(NOMA)以提高第五代(5G)和超出网络的光谱效率。本文使用Nakagami-M褪色通道的解码和前进(DF)方案研究了双跳多继电器NOMA中的系统性能。考虑了一组NOMA用户,即决定这些相关渠道有多强的附近和远的用户。具体地,当采用几个中继选择方案时,获取近/远的诺马马使用者的停电概率的闭合形式表达式,用于在M中间继电器中选择最佳。作为主要的发现,本文介绍了三种策略,包括两级继电器选择,最大分钟和基于功率分配的继电器选择方案。作为主要好处,少数用户被认为采用选择组合技术,以改善5G无线通信中大规模连接的上下文中提高可靠性的信号传输。通过进行数值模拟,我们评估中间继电器,NOMA功率分配因子和NAKAGAMI-M衰落严重性参数对NOMA用户的停电性能的影响。最后,通过数值结果提供了通过数值结果提供延时限制传输模式的中断概率,并且提供了必要的比较。

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