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Outage constraint based robust beamforming design for non-orthogonal multiple access in 5G cellular networks

机译:用于5G蜂窝网络中非正交多址的基于中断约束的鲁棒波束成形设计

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Recently, non-orthogonal multiple access (NOMA) has received considerable attention as a promising candidate for 5G systems. In this paper, a robust beamforming approach is investigated for NOMA based multiple-input single-output (MISO) downlink transmission. We consider an outage probability based robust scheme by incorporating channel uncertainties, where the total transmit power is minimized while satisfying these outage constraints at each user. Although the original problem is non-convex in terms of beamforming vectors, an intractable optimization problem is reformulated with a linear matrix inequality (LMI) form by exploiting semidefinite relaxation (SDR) technique. Finally, simulation results have been provided to validate the performance of the proposed robust design, where these results confirm that the robust scheme outperforms the non-robust scheme in terms of the rate satisfaction ratio at each user.
机译:最近,作为5G系统的有前途的候选者,非正交多路访问(NOMA)已受到相当多的关注。本文针对基于NOMA的多输入单输出(MISO)下行链路传输,研究了一种鲁棒的波束成形方法。我们通过结合信道不确定性来考虑基于中断概率的鲁棒方案,其中在满足每个用户的这些中断约束的同时,将总发射功率最小化。尽管就波束形成向量而言,最初的问题是非凸的,但是通过利用半定松弛(SDR)技术,使用线性矩阵不等式(LMI)形式重新构造了一个棘手的优化问题。最后,提供了仿真结果以验证所提出的鲁棒设计的性能,其中这些结果证实,就每个用户的速率满意度而言,鲁棒方案优于非鲁棒方案。

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