支持SDN/ nfv的MEC网络中VNF的放置和资源分配

Nahida Kiran, Xuanlin Liu, Sihua Wang, Changchuan Yin
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引用次数: 28

摘要

网络功能虚拟化(NFV)、软件定义网络(sdn)和移动边缘计算(MEC)正在成为5G及以后无线网络中满足越来越多用户需求的核心技术。SDN提供了控制平面与数据平面的清晰分离,而NFV支持灵活的实时创建和放置虚拟网络功能(VNFs),并且能够在分布式系统的各个位置执行,在我们的案例中,在启用NFV的MEC节点中。本文研究了VNF放置与资源分配(VNFPRA)问题,该问题涉及在支持nfv的分布式MEC节点上最优放置VNF,并将MEC资源有效地分配给这些VNF以满足网络中用户的需求。当前解决此问题的方案速度很慢,无法处理实时请求。为此,我们提出了一种SDN-NFV基础设施来解决无线MEC网络中的VNFPRA问题。我们的目标是尽量减少总体布局和资源成本。提出了两种算法:(i)混合整数规划(MIP)问题的最优解(ii)基于遗传的启发式解。通过与随机拟合布局算法(RFPA)和首次拟合布局算法(FFPA)的比较,验证了该算法的优越性。结果表明,在支持SDN/NFV的MEC网络中协调放置VNFs可以满足总体降低成本的目标。仿真结果还表明,该方案较好地逼近了我们的gurobi返回的最优解,并且与其他方法相比,总成本也有所降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
VNF Placement and Resource Allocation in SDN/NFV-Enabled MEC Networks
Network function virtualization (NFV), software defined networks (SDNs), and mobile edge computing (MEC) are emerging as core technologies to satisfy increasing number of users' demands in 5G and beyond wireless networks. SDN provides clean separation of the control plane from the data plane while NFV enables the flexible and on-the-fly creation and placement of virtual network functions (VNFs) and are able to be executed within the various locations of a distributed system and, in our case, in the NFV-enabled MEC nodes. VNF placement and resource allocation (VNFPRA) problem is considered in this paper which involves placing VNFs optimally in distributed NFV-enabled MEC nodes and assigning MEC resources efficiently to these VNFs to satisfy users' requests in the network. Current solutions to this problem are slow and cannot handle real-time requests. To this end, we propose an SDN-NFV infrastructure to tackle the VNFPRA problem in wireless MEC networks. Our aim is to minimize the overall placement and resource cost. Two algorithms are proposed: (i) an optimal solution formulated as a mixed integer program (MIP) problem (ii) a genetic based heuristic solution. The superior performance of the proposed solution is confirmed in comparison with two existing algorithms such as Random-Fit Placement Algorithm (RFPA) and First-Fit Placement Algorithm (FFPA). The results demonstrate that a coordinated placement of VNFs in SDN/NFV enabled MEC networks can satisfy the objective of overall reduced cost. Simulation results also reveal that the proposed scheme approximates well with our optimal solution returned by gurobi and also achieves reduction on overall cost compared to other methods.
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