Efficient Power Allocation for Cognitive Radio NOMA using Game-Theoretic Based Pricing Strategy

Shaima' S. Abidrabbu, H. Arslan
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引用次数: 4

Abstract

Cognitive radio-based non-orthogonal multiple access (CR-NOMA) is considered to be one of the promising multiple accessing technique candidates for 5G and beyond networks. These networks are facing a lot of challenges to achieve high spectral efficiency, low latency, and massive connectivity. Interference management and efficient power allocation are highly interesting among the researchers to investigate in CR-NOMA networks. This paper studies the power allocation of underlay CR-NOMA network using game theory approach by conducting the pricing technique to achieve efficient power allocation and minimum interference. In particular, the game is formulated, and its solution is achieved by exploring the suboptimal solution represented by the Pareto-efficiency of the Nash equilibrium point. The simulation results show the superiority of the proposed scheme in achieving higher spectral efficiency, fairness index, and sum utilities of secondary users compared to existing schemes.
基于博弈论定价策略的认知无线电NOMA有效功率分配
基于认知无线电的非正交多址(CR-NOMA)被认为是5G及以后网络中有前途的多址技术候选之一。这些网络在实现高频谱效率、低延迟和大规模连接方面面临着许多挑战。在CR-NOMA网络中,干扰管理和有效的功率分配是研究人员非常感兴趣的问题。本文采用博弈论方法研究底层CR-NOMA网络的功率分配问题,通过定价技术实现有效的功率分配和最小的干扰。具体地说,通过对纳什均衡点的帕累托效率表示的次优解进行探索,得到了该博弈的解。仿真结果表明,与现有方案相比,该方案具有更高的频谱效率、公平指数和二次用户总效用的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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