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Performance modeling and comparison of NFV integrated with SDN: Under or aside?

机译:与SDN集成的NFV的性能建模和比较:尚待解决?

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Software Defined Networking (SDN) focuses on the separation of data and control plane, while network function virtualization (NFV) decouples network functions from underlying hardware. Combining SDN with NFV would have many benefits, but the problem is how to integrate them. There are two possible architectures for such integration: the controller interacts with virtualized network functions (VNFs), or the switch interacts with VNFs. In this paper, the former is referred to as NFV under the controller (NFV_C) while the latter is called NFV aside the controller (NFV_AC). To the best of our knowledge, there is no analytical model for mathematically investigating the performance of such architectures. This paper therefore reports on the analytical modeling of SDN with NFV under or aside the controller. We model and analyze these two SDN + NFV architectures using an M/M/1 queuing model and validate our analysis with various simulations. We show that the analytical results match the simulation results very well. Furthermore, a packet delay reduction of 68.83% can be achieved for NFVAC over NFVC, meaning that NFVAC is a better architecture for integrating SDN with NFV. We also consider feedback from the VNF to the switch. For low loads there is delay increase of 35.42% for high feedback (90%) in comparison with low feedback (10%). In the case of high loads we recorded a delay increase of 66.64%.
机译:软件定义网络(SDN)专注于数据和控制平面的分离,而网络功能虚拟化(NFV)则使网络功能与底层硬件脱钩。将SDN与NFV结合会带来很多好处,但是问题是如何将它们集成在一起。这种集成有两种可能的体系结构:控制器与虚拟网络功能(VNF)交互,或者交换机与VNF交互。在本文中,前者在控制器(NFV_C)下称为NFV,而后者在控制器(NFV_AC)旁称为NFV。据我们所知,尚无用于数学研究此类体系结构性能的分析模型。因此,本文报告了在控制器下或控制器旁使用NFV的SDN的解析模型。我们使用M / M / 1排队模型对这两种SDN + NFV架构进行建模和分析,并通过各种仿真验证我们的分析。我们表明分析结果与仿真结果非常吻合。此外,与NFVC相比,NFVAC可以实现68.83%的数据包延迟降低,这意味着NFVAC是将SDN与NFV集成的更好架构。我们还考虑了从VNF到交换机的反馈。对于低负载,高反馈(90%)相比低反馈(10%)的延迟增加了35.42%。在高负载的情况下,我们记录到延迟增加了66.64%。

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