End-to-End Delay Minimization based Joint Route Selection and Network Function Placement in SDN

Leilei Huang, Rong Chai, Qianbin Chen, Chun Jin
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引用次数: 1

Abstract

The integration of software-defined networking (S-DN) and network function virtualization (NFV) is expected to achieve the convenient management and flexible deployment of various sophisticated network functions, and support user applications with guaranteed quality of service (QoS). In this paper, we jointly study route selection and network function placement problem. To stress the service sensitivity on delay, we formulate an optimization problem which minimizes the total end-to-end delay subject to data transmission, service requirement and various available resource constraints. As the formulated problem is an NP-hard problem, which cannot be solved easily, we transform it into three subproblems, i.e., route selection subproblem, network function placement subproblem and resource sharing subproblem of user flows, and solve the three subproblems by applying the K-shortest paths algorithm, Kuhn-Munkres (K-M) algorithm and Lagrangian dual method, respectively. Numerical results demonstrate the effectiveness of the proposed algorithm.
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基于SDN联合路由选择和网络功能布局的端到端时延最小化
软件定义网络(S-DN)与网络功能虚拟化(NFV)的融合,可以实现各种复杂网络功能的便捷管理和灵活部署,在保证服务质量(QoS)的前提下支持用户应用。本文共同研究了路由选择和网络功能布局问题。为了强调业务对延迟的敏感性,我们在数据传输、业务需求和各种可用资源约束的情况下,制定了一个最小化端到端总延迟的优化问题。由于公示问题是np困难问题,不易求解,我们将其转化为三个子问题,即用户流的路由选择子问题、网络功能放置子问题和资源共享子问题,并分别应用k -最短路径算法、khn - munkres (K-M)算法和拉格朗日对偶方法对这三个子问题进行求解。数值结果表明了该算法的有效性。
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