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Dual Connectivity in Non-Stand Alone Deployment mode of 5G in Manhattan Environment

机译:曼哈顿环境中5G非独立部署模式下的双连接

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The main target of this paper is to analyze the performance of an outdoor user in a dense micro cellular Manhattan grid environment using a ray launching simulation tool. The radio propagation simulations are performed using a Shoot and Bouncing Ray (SBR) method. The network performance is analyzed at three different frequencies i.e. 1.8 GHz, 3.5 GHz, and 28 GHz. Additionally, the benefits of combining LTE and potential 5G frequency bands by using feature of Dual Connectivity (DC) in an outdoor scenario has been highlighted. The considered performance metrics are received signal level, SINR, application throughput. The acquired simulation results from Manhattan canyon street environment reveal that a good 5G outdoor coverage can be provided at 3.5 GHz and 28 GHz while using existing 4G micro sites. The impact of Dual Connectivity at user's throughput is studied in this article, and it is shown user throughput can be doubled by leveraging the benefits of LTE and 5G NR together.
机译:本文的主要目标是使用射线发射仿真工具来分析户外用户在密集的微蜂窝曼哈顿网格环境中的性能。使用射击和弹跳射线(SBR)方法执行无线电传播模拟。在三个不同的频率(即1.8 GHz,3.5 GHz和28 GHz)下分析网络性能。此外,在室外场景中,通过使用双连接(DC)功能将LTE和潜在的5G频段组合在一起的好处已得到强调。所考虑的性能指标是接收信号电平,SINR,应用吞吐量。从曼哈顿峡谷街道环境获得的仿真结果表明,在使用现有4G微型站点的情况下,可以在3.5 GHz和28 GHz频率下提供良好的5G室外覆盖。本文研究了双连接对用户吞吐量的影响,结果表明,利用LTE和5G NR的优势,用户吞吐量可以提高一倍。

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