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NOMA-based multiple-antenna and multiple-relay networks over Nakagami-mfading channels with imperfect CSI and SIC error

机译:CSI和SIC错误不完全的Nakagami- m 衰落信道上基于NOMA的多天线和多中继网络

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摘要

In this study, non-orthogonal multiple access (NOMA)-based multiple-antenna and multiple-relay networks over Nakagami-mfading channels with imperfect channel state information (CSI) and successive interference cancellation (SIC) error are investigated. In order to measure the performance of the system, the exact outage probability and the ergodic sum rate of the system are explored. By analysing the impact of the partial relay selection scheme, it is shown that the performance gain can be achieved significantly by increasing the number of relays from one to two, but when the number of relays is equal to or greater than three, the increment of the performance gain becomes smaller and smaller, and finally saturated as the number of relays increases. Furthermore, due to the complexity of the derivation process for the ergodic sum rate, an upper bound of the ergodic sum rate is taken into account. Finally, by carrying out a series of experimental simulations, the authors prove the correctness of the theoretical derivations above, and from the comparison of NOMA and orthogonal multiple access (OMA), it is found that NOMA can provide better spectral efficiency and user fairness than OMA.
机译:在这项研究中,基于Nakagami- n m n 。为了衡量系统的性能,探讨了系统的确切中断概率和遍历总和率。通过分析部分继电器选择方案的影响,可以看出,通过将继电器的数量从一增加到两个,可以显着提高性能,但是当继电器的数量等于或大于三个时,其增量会增加。性能增益变得越来越小,最终随着继电器数量的增加而饱和。此外,由于遍历总和率的推导过程的复杂性,需要考虑遍历总和率的上限。最后,通过进行一系列的实验仿真,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可以提供比以下方法更好的频谱效率和用户公平性OMA。

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