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NOMA Power Allocation for Minimizing System Outage under Rayleigh Fading Channel

机译:NOMA功率分配可最大程度地减少瑞利衰落信道下的系统中断

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With the proliferation of the delay sensitive applications and services in cellular networks, the outage probability becomes an important metric that should be minimized to support the low latency requirement of the 5G network. In this paper, the analytical model is proposed to calculate the system outage probability as a closed form expression under the Rayleigh fading channel for the NOMA downlink system. We utilize the model to obtain the optimum power allocation that minimizes the system outage probability as a closed form expression. The accuracy of the proposed analytical model and optimum power allocation is validated by the Monte Carlo simulations. The numerical results show that the outage probability depends on the power allocation and the outage probability of OMA with the fractional power allocation is lower than NOMA with the optimum power allocation. The results indicate that the trade-off between the outage and spectral efficiency in NOMA should be carefully controlled to meet higher throughput and lower latency objectives of 5G.
机译:随着蜂窝网络中对延迟敏感的应用程序和服务的激增,中断概率已成为一项重要指标,应将其最小化以支持5G网络的低延迟要求。在本文中,提出了一种解析模型,用于以NOMA下行链路系统的瑞利衰落信道下的闭式表达式形式计算系统中断概率。我们使用该模型来获得最佳功率分配,该功率分配将最小化系统中断的可能性作为闭合形式表示。所提出的分析模型的准确性和最佳功率分配已通过蒙特卡洛模拟进行了验证。数值结果表明,断电概率取决于功率分配,具有分数功率分配的OMA的断电概率低于具有最优功率分配的OMA的断电概率。结果表明,应谨慎控制NOMA的中断与频谱效率之间的权衡,以满足5G更高的吞吐量和更低的延迟目标。

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