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引用次数: 17
摘要
网络功能虚拟化(Network function virtualization, NFV)代表了网络业务提供的最新技术进展。传统的硬件中间件被运行在行业标准服务器和虚拟机上的软件程序所取代,以实现服务敏捷性、灵活性和降低成本。NFV为用户提供由虚拟网络功能(VNFs)组成的服务链。在NFV服务链的配置中,一个基本问题是如何以最小的系统成本来满足用户需求。本文综合考虑节点资源成本和链路延迟成本两种成本类型,采用非线性优化的方法求解服务链的配置问题。通过辅助变量法,将优化问题转化为可分形式,然后应用乘法器的交替方向法(ADMM)设计可伸缩的全分布解。通过仿真研究,验证了分布式算法设计的收敛性和有效性。
A Scalable and Distributed Approach for NFV Service Chain Cost Minimization
Network function virtualization (NFV) represents the latest technology advancement in network service provisioning. Traditional hardware middleboxes are replaced by software programs running on industry standard servers and virtual machines, for service agility, flexibility, and cost reduction. NFV users are provisioned with service chains composed of virtual network functions (VNFs). A fundamental problem in NFV service chain provisioning is to satisfy user demands with minimum system-wide cost. We jointly consider two types of cost in this work: nodal resource cost and link delay cost, and formulate the service chain provisioning problem using nonlinear optimization. Through the method of auxiliary variables, we transform the optimization problem into its separable form, and then apply the alternating direction method of multipliers (ADMM) to design scalable and fully distributed solutions. Through simulation studies, we verify the convergence and efficacy of our distributed algorithm design.