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An OSPF-Integrated Routing Strategy for QoS-Aware Energy Saving in IP Backbone Networks

机译:IP骨干网中用于QoS节能的OSPF集成路由策略

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This paper deals with an energy saving routing solution, called Energy Saving IP Routing (ESIR), to be applied in an IP network. ESIR operation is integrated with Open Shorthest Path First (OSPF) protocol and allows the selection of the links to be switched off so that the negative effects of the IP topology reconfiguration procedures are avoided. The basic mechanisms which ESIR is based on are the concepts of SPT exportation and move. These mechanisms allow to share a Shortest Path Tree (SPT) between neighbor routers, so that the overall set of active network links can be reduced. Properties of moves are defined and the energy saving problem in an IP network is formulated as the problem of finding the Maximum Set of Compatible Moves (MSCM). The MSCM problem is investigated in two steps: firstly, a relaxed version of the problem, named basic MSCM problem, is considered in which QoS requirements are neglected; in the second step, the solution of the full problem, named QoS-aware MSCM problem, is faced. We prove that the basic MSCM problem can be formulated as the well-known Maximum Clique Problem in a graph; instead the QoS-aware MSCM introduces a condition equivalent to the Knapsack problem. ILP formulations to solve both the problems are given and heuristics to solve them in practical cases are proposed. The performance evaluation shows that in a real ISP network scenario ESIR is able to switch off up to 30% of network links by exploiting over-provisioning adopted by operators in the network resource planning phase and typical daily traffic trend.
机译:本文讨论了一种节能路由解决方案,称为节能IP路由(ESIR),将在IP网络中应用。 ESIR操作与开放式最短路径优先(OSPF)协议集成在一起,并允许关闭链路选择,从而避免了IP拓扑重新配置过程的负面影响。 ESIR所基于的基本机制是SPT导出和移动的概念。这些机制允许在相邻路由器之间共享最短路径树(SPT),从而可以减少活动网络链路的总体集合。定义了移动的属性,并将IP网络中的节能问题表述为寻找最大兼容移动(MSCM)集的问题。对MSCM问题的研究分为两个步骤:首先,考虑该问题的一个简化版本,即基本MSCM问题,其中忽略了QoS要求;在第二步中,将面对名为QoS感知的MSCM问题的完整问题的解决方案。我们证明基本的MSCM问题可以用图形表示为众所周知的最大集团问题;取而代之的是,具有QoS意识的MSCM引入了等同于背包问题的条件。给出了解决这两个问题的ILP公式,并提出了在实际情况下解决它们的启发式方法。性能评估表明,在实际的ISP网络场景中,ESIR能够通过利用运营商在网络资源规划阶段采用的超额配置和典型的日常流量趋势来关闭多达30%的网络链路。

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