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Energy-Efficient Resource Allocation in Multicarrier NOMA Systems With Fairness

机译:具有公平性的多载波NOMA系统中的节能资源分配

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Non-orthogonal multiple access (NOMA) has attracted both academic and industrial interest since it has been considered as one of the promising 5G technologies in order to increase connectivity and spectral efficiency. In this paper, we focus on a downlink multicarrier (MC) NOMA network, where a single base station serves a set of users through multiple subchannels. The goal is to jointly optimize energy efficiency (EE) and fairness among users with respect to the subcarrier and power allocation parameters. To achieve this with acceptable complexity, a novel greedy subcarrier assignment scheme based on the worst-user first principle is proposed. Due to the fractional form of the EE expression and the existence of interference, the power allocation problem is non-convex and NP-hard. To this end, we first transform this into an equivalent subtractive form, which is then solved by using fractional programming with sequential optimization of the inter/intra-subchannel power allocation vectors. Simulation results reveal the effectiveness of the proposed scheme in terms of EE and fairness among users compared to baseline schemes. Finally, the proposed algorithms are of fast convergence, low complexity, and insensitive to the initial values.
机译:非正交多次访问(NOMA)吸引了学术和工业利益,因为它被认为是有希望的5G技术之一,以提高连接和光谱效率。在本文中,我们专注于下行链路多载波(MC)NOMA网络,其中单个基站通过多个子信道服务一组用户。目标是在对子载波和功率分配参数方面共同优化用户的能效(EE)和公平性。为了实现这一目标,提出了一种基于最坏用户第一原理的新型贪婪子载波分配方案。由于EE表达的分数形式和干扰的存在,功率分配问题是非凸的和NP - 硬。为此,我们首先将其转换为等同的减法形式,然后通过使用分数编程来解决,该分数编程通过与子通道间功率分配向量的顺序优化进行了分数。仿真结果揭示了与基线方案相比,在用户的EE和公平方面提出了拟议方案的有效性。最后,所提出的算法具有快速收敛,低复杂度,对初始值不敏感。

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