5G核心切片在用户平面功能上的评估

C. Tsai, F. Lin, Hiroshige Tanaka
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引用次数: 2

摘要

网络切片是5G最重要的特性之一,通过网络虚拟化,可以实现具有不同性能要求的各种业务。传统上,网络可以被视为一刀切的切片,其服务与电信设备提供商支持的专有硬件捆绑在一起。现在,随着5G网络虚拟化技术的发展,开放式网络软件可以灵活地部署在商用硬件上,提供多片网络,每个片可以提供不同的网络服务集。在本研究中,我们提出了一种多片5G核心架构,通过提供不同QoS要求的用户平面功能(upf)。在相同的资源分配情况下,我们比较了这种多片系统与一刀切的单片体系结构的性能。我们的研究目标是比较网络切片架构与“一刀切”架构的性能,并验证前者在相同的底层基础设施下可以实现更好的性能。结果表明,通过合理的资源分配,将一个UPF切成三个UPF可以获得更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of 5G Core Slicing on User Plane Function
Network slicing is one of the most important features in 5G which enables a large variety of services with diverse performance requirements by network virtualization. Traditionally, the network can be viewed as a one-size-fits-all slice and its services are bundled with proprietary hardware supported by telecom equipment providers. Now with the network virtualization technology in 5G, open networking software can be deployed flexibly on commodity hardware to offer a multi-slice network where each slice can offer a different set of network services. In this research, we propose a multi-slice 5G core architecture by provisioning its User Plane Functions (UPFs) with different QoS requirements. We compare the performance of such a multi-slice system with that of one-size-fits-all single slice architecture under the same resource assignment. Our research objective is to compare the performance of a network slicing architecture with that of a “one-size-fits-all” architecture and validate that the former can achieve better performance with the same underlying infrastructure. The results validate that our proposed system can achieve better performance by slicing one UPF into three with proper resource allocation.
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