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Handover scheme for 5G small cell networks with non-orthogonal multiple access

机译:具有非正交多址的5G小型小区网络的移交方案

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The enormous developments in new generation networks reveal the high bandwidth requirements of mobile users. Therefore, wireless communications technologies move higher frequencies with a small coverage area. The small cell concept exposes these advancements for 5G network framework. The small cell issue is a part of 5G networks with non-orthogonal multiple access, millimeter-wave communications, massive MIMO technology, IoT, spectrum sharing, ultra-dense networks, D2D communications, etc. The small cell with small coverage area and seamless communications needs of the mobile users reveal the dense networks with explosive data traffic. The handover process undertakes an important task for 5G networks according to the dense network, small coverage area, and user mobility specifications. In this study, we aim to investigate classic RSSI based handover scheme and fuzzy logic based handover scheme with NOMA for 5G networks. We take into consideration RSSI, BER, and Outage Probability parameters for fast and seamless handover decisions and utilize NOMA technique for users' multiple access. This is the first study for 5G small cell networks fuzzy logic-based handover scheme with NOMA in the literature.
机译:新一代网络的巨大发展揭示了移动用户的高带宽要求。因此,无线通信技术使用小覆盖区域移动更高的频率。小型小区概念为5G网络框架公布了这些进步。小单元问题是5G网络的一部分,具有非正交多次访问,毫米波通信,大规模的MIMO技术,物联网,频谱共享,超密集网络,D2D通信等。小型覆盖区域和无缝的小型电池移动用户的通信需求显示爆炸性数据流量的密集网络。切换过程根据密集网络,小覆盖区域和用户移动规范对5G网络进行重要任务。在这项研究中,我们的目的是调查基于Classic RSSI的切换方案和基于FIS的Fuldy Web的切换方案,具有5G网络的NOMA。我们考虑了RSSI,BER和中断概率参数,以便快速和无缝切换决策,并利用NOMA技术进行用户的多次访问。这是第一次研究5G小型电池网络模糊逻辑的切换方案,其中文献中的NOMA。

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