Elastic Network Design and Adaptive Flow Placement in Software Defined Networks

Julius Mueller, Andreas Wierz, D. Vingarzan, T. Magedanz
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引用次数: 4

Abstract

Large scale telecommunication network deployment and its management requires huge Operational Expenditure (OPEX) and Capital Expenditure (CAPEX) from the network operator. Network virtualization, Software Defined Networks (SDN) concepts and Cloud principles enable innovative approaches for introducing elasticity in the network for reducing OPEX. The activation and de-activation of network elements and their efficient interconnection is known as Network Design enabling up- and downscaling of the parts of the entire network on demand based on the traffic situation. Adaptive Flow Placement through SDN controller functionalities introduces novel mechanisms to influence service data flows within the network actively with the goal to distribute the network load equally, increase reliability and reduce cost through deactivation of unused network parts. This paper introduces a novel cost saving approach for on demand elastic Network Design and active Flow Placement in SDN environments. The underlying Network Design problem is being solved using a State of the Art Mixed Integer Programming (MIP) Solver and a sophisticated MIP formulation. A summary concludes this paper.
软件定义网络中的弹性网络设计和自适应流布局
大规模的电信网络部署和管理需要网络运营商投入巨额的运营支出(OPEX)和资本支出(CAPEX)。网络虚拟化、软件定义网络(SDN)概念和云计算原理为在网络中引入弹性以降低运营成本提供了创新方法。网元的激活和失效以及它们之间的有效互连被称为网络设计,它可以根据流量情况对整个网络的各个部分按需进行伸缩。通过SDN控制器功能的自适应流放置引入了新的机制来主动影响网络中的业务数据流,目标是平均分配网络负载,通过停用未使用的网络部分来提高可靠性和降低成本。本文介绍了一种在SDN环境下按需弹性网络设计和主动流放置的新型成本节约方法。使用最先进的混合整数规划(MIP)求解器和复杂的MIP公式来解决潜在的网络设计问题。本文以小结结尾。
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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