计算机科学
软件部署
供应
整数规划
分布式计算
计算机网络
架空(工程)
服务(商务)
水准点(测量)
线性规划
网络服务
虚拟网络
操作系统
经济
地理
经济
算法
大地测量学
作者
Junjie Liu,Wei Lu,Fen Zhou,Ping Lu,Zuqing Zhu
标识
DOI:10.1109/tnsm.2017.2711610
摘要
Network function virtualization (NFV) is a promising technology to decouple the network functions from dedicated hardware elements, leading to the significant cost reduction in network service provisioning. As more and more users are trying to access their services wherever and whenever, we expect the NFV-related service function chains (SFCs) to be dynamic and adaptive, i.e., they can be readjusted to adapt to the service requests' dynamics for better user experience. In this paper, we study how to optimize SFC deployment and readjustment in the dynamic situation. Specifically, we try to jointly optimize the deployment of new users' SFCs and the readjustment of in-service users' SFCs while considering the trade-off between resource consumption and operational overhead. We first formulate an integer linear programming (ILP) model to solve the problem exactly. Then, to reduce the time complexity, we design a column generation (CG) model for the optimization. Simulation results show that the proposed CG-based algorithm can approximate the performance of the ILP and outperform an existing benchmark in terms of the profit from service provisioning.
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