The path towards resource elasticity for 5G network architecture

David Manuel Gutiérrez Estévez, M. Gramaglia, A. Domenico, N. Pietro, Sina Khatibi, Kunjan Shah, D. Tsolkas, P. Arnold, P. Serrano
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引用次数: 27

Abstract

Vertical markets and industries are addressing a large diversity of heterogeneous services, use cases, and applications in 5G. It is currently common understanding that for networks to be able to satisfy those needs, a flexible, adaptable, and programmable architecture based on network slicing is required. Moreover, a softwarization and cloudification of the communications networks is already happening, where network functions (NFs) are transformed from monolithic pieces of equipment to programs running over a shared pool of computational and communication resources. However, this novel architecture paradigm requires new solutions to exploit its inherent flexibility. In this paper, we introduce the concept of resource elasticity as a key means to make an efficient use of the computational resources in 5G systems. Besides establishing a definition as well as a set of requirements and key performance indicators (KPIs), we propose mechanisms for the exploitation of elasticity in three different dimensions, namely computational elasticity in the design and scaling of NFs, orchestration-driven elasticity by flexible placement of NFs, and slice-aware elasticity via cross-slice resource provisioning mechanisms. Finally, we provide a succinct analysis of the architectural components that need to be enhanced to incorporate elasticity principles.
5G网络架构资源弹性之路
垂直市场和行业正在解决5G中各种各样的异构服务、用例和应用。目前人们普遍认为,为了使网络能够满足这些需求,需要一种基于网络切片的灵活、可适应和可编程的体系结构。此外,通信网络的软件化和云化已经在发生,网络功能(NFs)从单片设备转变为运行在共享计算和通信资源池上的程序。然而,这种新颖的架构范式需要新的解决方案来利用其固有的灵活性。在本文中,我们引入了资源弹性的概念,作为5G系统中有效利用计算资源的关键手段。除了建立定义以及一组需求和关键性能指标(kpi)外,我们还提出了在三个不同维度上利用弹性的机制,即NFs设计和扩展中的计算弹性,NFs灵活放置的编排驱动弹性,以及通过跨片资源供应机制的片感知弹性。最后,我们简要分析了需要增强以结合弹性原则的体系结构组件。
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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