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Hybrid NOMA/OMA With Buffer-Aided Relay Selection in Cooperative Networks

机译:协作网络中具有缓冲辅助中继选择的混合NOMA / OMA

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Non-orthogonal multiple access (NOMA) aims to increase the spectral efficiency of fifth generation networks by relaxing the orthogonal use of radio-resources. In this paper, a network with multiple half-duplex buffer-aided (BA) relays is considered, where the source transmits with a fixed rate toward two users. The users might demand the same rate by the source (e.g., two cellular users requiring the same service), or they could have different rate requirements (e.g., a cellular user coexisting with an Internet of Things device). By deploying multiple BA relays, increased reliability and additional degrees of freedom are provided. Leveraging the spectral efficiency of NOMA and the increased diversity gain of BA relaying, two relay selection algorithms with broadcasting are proposed for power-domain NOMA and hybrid NOMA/OMA, namely BA-NOMA and BA-NOMA/OMA, respectively. BA-NOMA can improve the performance in terms of the outage probability when the power allocation factor alpha is selected such that robustness against channel uncertainties due to, e.g., outdated channel state information is provided. Moreover, BA-NOMA/OMA further improves the sum-rate by switching to OMA when the relays cannot serve the users through NOMA. For both cases, a theoretical analysis for the outage probability is conducted and the asymptotic performance is studied. Finally, numerical results and comparisons with other state-of-the-art algorithms are provided for the outage probability, average throughput, and average delay.
机译:非正交多址访问(NOMA)旨在通过放松无线电资源的正交使用来提高第五代网络的频谱效率。在本文中,考虑了具有多个半双工缓冲辅助(BA)中继的网络,其中源以固定速率向两个用户传输。用户可能要求源提供相同的速率(例如,两个蜂窝用户需要相同的服务),或者他们可能具有不同的速率要求(例如,一个蜂窝用户与物联网设备共存)。通过部署多个BA继电器,可以提供更高的可靠性和更多的自由度。利用NOMA的频谱效率和BA中继增加的分集增益,分别针对功率域NOMA和混合NOMA / OMA提出了两种具有广播功能的中继选择算法,分别是BA-NOMA和BA-NOMA / OMA。当选择功率分配因子α,从而提供针对由于例如过时的信道状态信息而引起的信道不确定性的鲁棒性时,BA-NOMA可以根据中断概率来改善性能。此外,当中继无法通过NOMA为用户服务时,BA-NOMA / OMA通过切换到OMA进一步提高了总速率。对于这两种情况,都对中断概率进行了理论分析,并研究了渐近性能。最后,提供了中断结果,平均吞吐量和平均延迟的数值结果以及与其他最新算法的比较。

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