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首页> 外文期刊>Journal of the Chinese Institute of Engineers >Power control for interference mitigation by evolutionary game theory in uplink NOMA for 5G networks
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Power control for interference mitigation by evolutionary game theory in uplink NOMA for 5G networks

机译:5G网络上行链路NOMA中进化博弈论的干扰减轻电源控制

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摘要

The demand for mobile uplink traffic has increased significantly in the past few decades with the development of the Internet of Things (IoT) and mobile Internet. This has subsequently imposed challenges on 5G networks to provide high spectral efficiency and low-power massive connectivity. Non-orthogonal multiple access (NOMA) is a viable alternative to the current state-of-the-art orthogonal multiple access (OMA) techniques to address the challenges in 5G systems. In addition, a power control (PC) mechanism to mitigate the effect of interference between users can be accommodated to improve network performance. In this paper, we discuss the basic principles, key features, and strengths/weaknesses of the various power domain NOMA schemes. Moreover, we propose an uplink PC scheme for the users of a power domain NOMA network. The proposed PC method makes use of the evolutionary game theory (EGT) model to adaptively adjust the transmitted power level of the users which helps in mitigating user interference. A successive interference cancellation (SIC) receiver is applied at a base station (BS) in order to separate the users' signals. By performing simulations, we show that the proposed EGT-based PC scheme achieves higher network efficiency, spectral efficiency, and energy efficiency.
机译:在过去的几十年中,对移动互联网(物联网)和移动互联网的发展,对移动上行链路流量的需求显着增加。这随后对5G网络施加了挑战,以提供高谱效率和低功率大量连接。非正交多次访问(NOMA)是目前最先进的正交多址(OMA)技术的可行替代方案,以解决5G系统中的挑战。另外,可以容纳了减轻用户之间干扰效果的功率控制(PC)机制以提高网络性能。在本文中,我们讨论了各种动力域NOMA方案的基本原理,关键特征和强度/弱点。此外,我们提出了一种用于电力域NOMA网络的用户的上行链路PC方案。所提出的PC方法利用进化博弈论(EGT)模型来自适应地调整用户的发射功率电平,这有助于减轻用户干扰。在基站(BS)处应用连续的干扰消除(SIC)接收器,以便分离用户的信号。通过执行模拟,我们表明所提出的基于EGT的PC方案实现了更高的网络效率,光谱效率和能效。

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