HIPER: Heuristic-based infrastructure expansion through partition reconnection for efficient Virtual Network Embedding

M. C. Luizelli, L. Bays, M. Barcellos, L. Gaspary
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引用次数: 2

Abstract

As research in the area of network virtualization continues to advance, there have been numerous efforts to solve the challenge of efficiently mapping virtual networks on top of physical structures. Despite these efforts, current state-of-the-art proposals still suffer from significant amount of rejection of virtual network requests in circumstances where overall resource availability would be sufficient to embed them. This is caused by the exhaustion of resources in certain key points of the infrastructure. In this paper, we propose HIPER - a strategy for expanding physical networks that suggests infrastructure upgrades with the objective of maximizing the acceptance of virtual network requests (and, as a consequence, physical resource utilization). This is achieved through the reconnection of strongly connected components (i.e., recurring partitions) of the infrastructure. Evaluated under realistic workloads, HIPER led to promising results. After the expansion of 10% to 20% of infrastructure resources, HIPER sustained an increase of up to 30% in virtual network acceptance, allowing an additional 52% in resource utilization.
HIPER:基于启发式的基础设施扩展,通过分区重连接实现高效的虚拟网络嵌入
随着网络虚拟化领域的研究不断推进,人们已经做出了许多努力来解决在物理结构上有效映射虚拟网络的挑战。尽管做出了这些努力,当前最先进的提案仍然遭受大量虚拟网络请求的拒绝,而在整体资源可用性足以嵌入它们的情况下。这是由于基础设施某些关键点的资源耗尽造成的。在本文中,我们提出了HIPER——一种扩展物理网络的策略,它建议基础设施升级的目标是最大限度地接受虚拟网络请求(并因此提高物理资源利用率)。这是通过重新连接基础设施的强连接组件(即,循环分区)来实现的。在实际工作负载下进行评估,HIPER产生了令人鼓舞的结果。在基础设施资源扩展了10%到20%之后,HIPER的虚拟网络接受度持续增长了30%,资源利用率增加了52%。
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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