Applications of Capacity Enlargement and Traffic Management Control in Hybrid Satellite-Terrestrial 5G Networks

M. Mourad Mabrook, A. Hussein
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Abstract

The significant volume of data traffic, ultimate data rates, reduced latency, more transmissions with efficient energy, spectrum consumption, and novel technological use cases must all be considered using the fifth generation (5G) mobile network. Future 5G networks will connect billions of objects, known as the Internet of Things (IoT) or massive Machine-T Communications (mMTC), in addition to standard Mobile Broadband (MBB) services. Non-Terrestrial Networks (NTNs) may serve connection requests anywhere and anytime by offering wide-area coverage and preserving service continuity, availability, and scalability. The satellite platform is a crucial NTN for integrating with the 5G network and delivering the necessary services. Soon, 5G network development will depend on satellite access, as stated in the 3Gpp Release 16 specification. This paper provides options for incorporating satellite systems into a 5G network design to increase capacity and extend coverage in 5G mobile networks. In addition, 5G networks must address a network model to resolve outage, congestion, and cell edge context issues. The last phase is the simulation of the problem formulation for the investigation of capacity and traffic in hybrid satellite-terrestrial 5G mobile backhauling networks.
5G星地混合网络中扩容与流量管理控制的应用
在使用第五代(5G)移动网络时,必须考虑大量的数据流量、最终的数据速率、更低的延迟、更高效的能源传输、频谱消耗以及新颖的技术用例。除了标准的移动宽带(MBB)服务外,未来的5G网络将连接数十亿个物体,称为物联网(IoT)或大规模机器- t通信(mMTC)。非地面网络(ntn)通过提供广域覆盖和保持业务连续性、可用性和可扩展性,可以随时随地为连接请求提供服务。卫星平台是与5G网络集成并提供必要服务的关键NTN。很快,5G网络的发展将依赖于卫星接入,正如3Gpp第16版规范所述。本文提供了将卫星系统纳入5G网络设计的选项,以增加5G移动网络的容量和扩展覆盖范围。此外,5G网络必须解决网络模型,以解决中断、拥塞和蜂窝边缘上下文问题。最后是卫星-地面混合5G移动回程网络容量和流量研究问题的模拟。
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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