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Performance analysis of modified BCube topologies for virtualized data center networks

机译:用于虚拟数据中心网络的修改后的BCube拓扑的性能分析

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Network virtualization enables the computing networks and data center (DC) providers to manage their networking resources in a flexible manner using software running on physical computers. Thus, using DC topology with high flexibility to the required service-level changes is very important to this purpose. In this paper, we address the existing issues with the classic DC network topology-in virtualized DC networks and investigate the performance of a set of modified BCube topologies with the capability of providing dynamic structures according to the bandwidth requirement in a virtual DC network. In particular, we propose three main approaches to modify the structure of a classic BCube topology as a topology benchmark and investigate their associated structural features and maximum achievable interconnected bandwidth for different routing scenarios. Finally, we run an extensive simulation program to check the performance of the proposed modified topologies in a simulation environment which considers the failure analysis and also traffic congestion. Our simulation experiments, which are consistent to our design goals, show the efficiency of the proposed modified topologies comparing to the classic BCube in terms of bandwidth availability and failure resiliency. (C) 2016 Elsevier B.V. All rights reserved.
机译:网络虚拟化使计算网络和数据中心(DC)提供商可以使用在物理计算机上运行的软件灵活地管理其网络资源。因此,对于所需的服务级别更改使用具有高度灵活性的DC拓扑对于此目的非常重要。在本文中,我们解决了经典DC网络拓扑在虚拟化DC网络中存在的问题,并研究了一组修改后的BCube拓扑的性能,这些拓扑能够根据虚拟DC网络中的带宽需求提供动态结构。特别是,我们提出了三种主要方法来修改经典BCube拓扑的结构作为拓扑基准,并研究它们的相关结构特征以及针对不同路由方案的最大可实现互连带宽。最后,我们运行一个广泛的仿真程序,以在考虑故障分析和流量拥塞的仿真环境中检查所提出的修改后拓扑的性能。我们的仿真实验符合我们的设计目标,在带宽可用性和故障恢复能力方面,与传统的BCube相比,表明了所提出的改进拓扑的效率。 (C)2016 Elsevier B.V.保留所有权利。

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