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Optimal Power Allocation in NOMA Systems with Imperfect Channel Estimation

机译:具有不完美信道估计的NOMA系统中的最佳功率分配

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Non-orthogonal multiple access is a promising technology for the fifth generation systems which exploits the power domain to achieve higher spectral efficiency. The performance of NOMA techniques are usually investigated under an ideal setup with perfect successive interference cancellation. However, the limitations of NOMA techniques under a setup with imperfect successive interference cancellation are not well understood. Contrary to the approaches in the literature, we examine the performance of NOMA under a non-ideal setup and propose two power allocation algorithms. The first algorithm is designed for the max-min problem whereas the second algorithm considers the heterogeneous rate requirements of users and provides solutions based on a novel rate measure. The performance of the algorithms is investigated both theoretically and numerically under a non- ideal setup with channel estimation errors. The theoretical analyses reveal that the algorithms achieve the optimum power allocation for the rate max-min problems. The numerical analyses are not only in agreement with the theoretical analyses, but also show the superiority of the proposed algorithms compared to both the conventional multiple access techniques as well as other NOMA approaches.
机译:非正交多次访问是利用电力域实现更高的光谱效率的第五代系统的有希望的技术。 NOMM技术的性能通常在具有完美连续干扰取消的理想设置下进行研究。然而,NOMA技术在具有不完美的连续干扰消除的设置下的局限性并不充分理解。与文献中的方法相反,我们在非理想设置下检查NOMA的性能,并提出两个功率分配算法。第一算法专为MAX-min问题而设计,而第二算法考虑了用户的异构速率要求,并提供基于新颖速率测量的解决方案。在具有信道估计误差的非理想设置下理论上和数值来研究算法的性能。理论分析揭示了算法实现了速率最佳的最佳功率分配。数值分析不仅与理论分析一致,而且还示出了与传统的多种接入技术以及其他NOMA方法相比的所提出的算法的优越性。

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