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Role switching and power allocation technique for mobile users in non-orthogonal multiple access

机译:非正交多次访问中移动用户的角色交换和功率分配技术

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In this paper, role switching and power allocation schemes are proposed to tackle user mobility in nonorthogonal multiple access (NOMA) systems. A downlink transmission scenario is considered, where two highly mobile users, a cell center user and a cell edge user, are paired/served over the same channel resource using NOMA. In such high mobility scenarios, when these users come very close to, or even cross, each other, their channel gains may become similar or even violate the initial channel ordering when they were paired. This article refers to such condition as NOMA principle violation problem (NPVP). To solve this NPVP, optimized power role switching-NOMA (OPRS-NOMA) technique is proposed. Role switching technique is used to switch the roles of mobile users on the basis of their dynamic channel ordering. Furthermore, a power allocation scheme based on bisection search power optimization is presented to maximize the average sum capacity of mobile NOMA users. Random way point mobility model is considered for user mobility , where individual and sum capacity are used for performance evaluation. Simulation results show that OPRS-NOMA outperforms the conventional NOMA and orthogonal multiple access schemes. (c) 2020 Elsevier B.V. All rights reserved.
机译:在本文中,提出了角色交换和功率分配方案来解决非正交多址(NOMA)系统中的用户移动性。考虑下行链路传输方案,其中两个高度移动用户,小区中心用户和小区边缘用户,使用NOMA在相同的信道资源上配对/服务。在如此高的移动性方案中,当这些用户非常接近,甚至相互交叉时,它们的频道增益可能变得类似甚至违反它们配对时的初始通道排序。本文指的是纳米原则违规问题(NPVP)的条件。为了解决该NPVP,提出了优化的电源角色切换 - NOMA(OPRS-NOMA)技术。角色交换技术用于根据其动态通道排序切换移动用户的角色。此外,提出了一种基于双分布搜索功率优化的功率分配方案,以最大化移动诺马克用户的平均和平容量。随机途径点移动模型被认为是用户移动性,其中单个和总和用于性能评估。仿真结果表明,OPRS-NOMA优于传统的NOMA和正交多址方案。 (c)2020 Elsevier B.v.保留所有权利。

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