Utilization-aware Virtual Network Function Placement Using NSGA-II Evolutionary Computing

Sanaz Tavakoli-Someh, Mohammad Hossein Rezvani
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引用次数: 10

Abstract

Network functions virtualization (NFVs) is a paradigm shift in order to integrate network functions (NFs). Moreover, Virtual Network Functions (VNFs) can easily be transferred from one device to another without the need for a new special hardware installation. On the other hand, VNF placement (VNF-P) is proved to be NP-hard. In this paper we present a multi-objective meta-heuristic solution using the NSGA-II algorithm for the VNF-P problem. The goal of our algorithm is to place VNFs corresponding to different service chains onto physical hosts, in such a way that could increase the physical resource utilization, and reduce the number of used (active) physical hosts. The simulation results using the well-known CloudSim framework show robustness of the proposed method in terms of criteria such as resource utilization, number of used physical hosts and so on.
基于NSGA-II进化计算的利用率感知虚拟网络功能布局
网络功能虚拟化(nfv)是为了集成网络功能(NFs)而进行的一种范式转换。此外,虚拟网络功能(VNFs)可以很容易地从一个设备转移到另一个设备,而不需要安装新的特殊硬件。另一方面,VNF放置(VNF- p)被证明是NP-hard。本文提出了一种基于NSGA-II算法的多目标元启发式求解VNF-P问题。我们算法的目标是将不同服务链对应的VNFs放置到物理主机上,这样可以提高物理资源利用率,并减少已使用(活动)物理主机的数量。使用知名的CloudSim框架进行的仿真结果表明,根据资源利用率、使用的物理主机数量等标准,所提出的方法具有鲁棒性。
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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