5G自调节网络切片,实现资源高效利用

M. Singh, Shwetha Vittal, A. Franklin
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引用次数: 5

摘要

5G旨在利用软件定义网络(SDN)和网络功能虚拟化(NFV)等技术,满足eMBB(增强型移动宽带)、URLLC(超可靠低延迟通信)和mMTC(大规模机器类型通信)等各种网络业务的需求。这些服务可以通过隔离的虚拟网络提供,引入5G网络切片的概念,有助于动态调整资源,从而最大限度地提高各服务的资源利用率。资源的动态调整可以通过监控闭环自动化(CLA)中的切片实例来实现,以便对切片缩放、选择等做出快速决策。在本文中,我们提出了一个自调节网络切片(SERENS)框架,用于5G中的切片监测和选择。我们已经在5G测试平台系统中开发了拟议的sens框架的原型,并表明正确的切片选择可以避免高达60%的切片资源浪费。所提出的切片选择算法将有助于运营商在有效利用可用资源的同时服务更多的用户。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SERENS: Self Regulating Network Slicing in 5G for Efficient Resource Utilization
5G is designed to meet the requirements of various network services such as eMBB (enhanced Mobile Broadband), URLLC (Ultra Reliable Low Latency Communications), and mMTC (massive Machine Type Communication) by making use of the technologies such as Software Defined Networking (SDN) and Network Function Virtualization (NFV). These services can be provided through isolated virtual networks bringing in the concept of network slicing in 5G which helps in adjusting the resources dynamically which in turn can maximize resource utilization across the services. The dynamic adjustment of resources can be achieved by monitoring slice instances in the Closed Loop Automation (CLA) to make quick decisions on slice scaling, selection, etc. In this paper, we propose a Self Regulating Network Slicing (SERENS) framework for slice monitoring and selection in 5G. We have developed a prototype of the proposed SERENS framework in a 5G test-bed system and shown that proper slice selection can avoid wastage of resources of slices by up to 60%. The proposed slice selection algorithm will help the operator to serve a higher number of users while making the efficient usage of the available resources.
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