论文标题

带有RIS分区的新型Noma解决方案

A Novel NOMA Solution with RIS Partitioning

论文作者

Khaleel, Aymen, Basar, Ertugrul

论文摘要

可重新配置的智能表面(RIS)与非正交多重访问(NOMA)的授权通信最近已成为下一代无线通信的吸引人的研究方向。在本文中,我们提出了一种新型的Noma解决方案,并通过RIS分区进行了新的解决方案,我们旨在通过提高所有用户的厄尔贡速率并最大程度地提高用户的公平性来提高光谱效率。在拟议的系统中,我们在用户之间分配物理资源,以使基站(BS)和RIS致力于为不同的用户群提供服务。此外,我们制定了一个RIS分区优化问题,以切成用户之间的RIS元素,以使用户公平性最大化。配制的问题是与组合可行的集合的非凸面和非线性整数编程(NLIP)问题,解决方案非常具有挑战性。因此,我们利用问题的结构来绑定其可行集合,并通过顺序应用三种有效的搜索算法来获得亚最佳解决方案。此外,我们为中断概率得出精确和渐近表达式。仿真结果清楚地表明,根据千古率,中断概率和用户公平性能,所提出的系统优于考虑基准系统的优越性。

Reconfigurable intelligent surface (RIS) empowered communications with non-orthogonal multiple access (NOMA) has recently become as an appealing research direction for the next-generation wireless communications. In this paper, we propose a novel NOMA solution with RIS partitioning, where we aim to enhance the spectrum efficiency by improving the ergodic rate of all users, and to maximize the user fairness. In the proposed system, we distribute the physical resources among users such that the base station (BS) and RIS are dedicated to serve different clusters of users. Furthermore, we formulate an RIS partitioning optimization problem to slice the RIS elements between the users such that the user fairness is maximized. The formulated problem is a non-convex and non-linear integer programming (NLIP) problem with a combinatorial feasible set, which is very challenging to solve. Therefore, we exploit the structure of the problem to bound its feasible set and obtain a sub-optimal solution by sequentially applying three efficient search algorithms. Furthermore, we derive exact and asymptotic expressions for the outage probability. Simulation results clearly indicate the superiority of the proposed system over the considered benchmark systems in terms of ergodic sum-rate, outage probability, and user fairness performance.

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