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Improvement of Throughput using Dual Connectivity in Non-Standalone 5G NR Networks

机译:在非独立5G NR网络中使用双连接性提高吞吐量

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Wireless communications are constantly evolving to facilitate better access to information for the improvement of business, education, and technology around the world. Hence to overcome the lack of spectrum new bands like millimeter wave (mmWave) bands are needed to be utilized. The mmWave bands offer a huge spectrum due to which substantial attention is being given to exploit this frequency range for deploying 5G cellular systems. 5G wireless technology is expected to deliver multi-Gbps data rates, vast network capacity, low latency, and more reliability. Despite the provision of the spectrum, the new mmWave bands are prone to blockages and obstacles. Hence, these bands must be deployed with the help of an architecture that can overcome this drawback and can prevent any disruption of service in case of blockage. This paper implements a non-standalone (NSA) architecture using modified dual connectivity of user equipment (UE) to Long Term Evolution (LTE) module and mmWave module of ns-3 for more robust deployment of 5G New Radio (NR) network. It also includes a detailed discussion upon the design and functioning of 5G NR in NSA mode with the help of a simulation setup. Finally, the performance of the 5G network in standalone (SA) and non-standalone modes are compared both graphically and numerically based on the throughput measurements.
机译:无线通信不断发展,以促进更好地访问信息,从而改善了全球的业务,教育和技术。因此,为了克服频谱的缺乏,需要利用新的频带,例如毫米波(mmWave)频带。 mmWave频段提供了一个巨大的频谱,因此,人们将极大地关注开发此频率范围以部署5G蜂窝系统。预计5G无线技术将提供数Gbps的数据速率,巨大的网络容量,低延迟和更高的可靠性。尽管提供了频谱,但新的毫米波频段仍容易出现阻塞和障碍。因此,必须在能够克服此缺点并在发生阻塞的情况下防止任何服务中断的体系结构的帮助下部署这些频段。本文通过使用修改后的用户设备(UE)与ns-3的长期演进(LTE)模块和mmWave模块的双重连接实现非独立(NSA)架构,以更稳健地部署5G新无线电(NR)网络。它还包括借助仿真设置对NSA模式下5G NR的设计和功能进行的详细讨论。最后,根据吞吐量测量结果,以图形和数字方式比较独立(SA)和非独立模式下5G网络的性能。

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