迁移VNF实例以实现服务连续性

IF 0.9 Q4 TELECOMMUNICATIONS
Nazli Siasi, Mohammed A. Jasim
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引用次数: 0

摘要

雾计算基于将云扩展到网络边缘的分布式架构来本地计算和存储数据。这使得雾范例适用于需要各种网络功能(NF)的延迟敏感应用程序。这里使用网络功能虚拟化(NFV)来提供这些NF,以允许在雾节点上进行弹性NF部署,即虚拟网络功能(VNF)。现在,基于NFV的雾架构面临的一个主要挑战是资源有限,这会使它们过早饱和和负载失衡。因此,资源管理方案对于雾网络是必要的,特别是负载迁移和再分配。在此基础上,利用协调广义模式搜索(CGPS)启发式方法,提出了一种有效的迁移方案。该方案将过量负载从重负载(HL)节点迁移到附近的轻负载(LL)节点。该方案采用了两个标准,称为VNF实例的独占和通用。结果表明,该方案在减少延迟的情况下实现了高迁移成功率,并在低迁移频率的情况下减少了资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Migration of VNF instances for service continuity

Fog computing computes and stores data locally based upon distributed architectures that extend cloud to the edge of the network. This enables fog paradigms to be suitable for delay-sensitive applications that demand various network functions (NFs). These NFs here are provided using network function virtualization (NFV) to allow elastic NF deployment on the fog nodes, that is, virtual network functions (VNFs). Now a major challenge for NFV-based fog architectures is the limited resources, which vulnerate them to premature saturation and load imbalance. Hence resource management schemes are necessary for fog networks, in particular load migration and redistribution. Along this, an efficient migration scheme is proposed here using the coordinated generalized pattern search (CGPS) heuristic method. The scheme migrates excess load from heavily-loaded (HL) nodes to lightly-loaded (LL) nodes in proximity. The scheme adopts two criteria, termed as exclusive and common use of VNF instances. Results show that the proposed scheme achieves high migration success at reduced delays, as well as alleviating resources with low migration frequency.

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