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Preconfiguring IP-over-Optical Networks to Handle Router Failures and Unpredictable Traffic

机译:预先配置IP光纤网络以处理路由器故障和不可预测的流量

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We consider the realization of traffic-oblivious routing in IP-over-optical networks where routers are interconnected over a switched optical backbone. The traffic-oblivious routing we consider is a scheme where incoming traffic is first distributed in a preset manner to a set of intermediate nodes. The traffic is then routed from the intermediate nodes to the final destination. This splitting of the routing into two phases simplifies network configuration significantly. In implementing this scheme, the first and second phase paths are realized at the optical layer with router packet grooming at a single intermediate node only. Given this unreliability of routers, we consider how two-phase routing in IP-over-optical networks can be made resilient against router node failures. We propose two different schemes for provisioning the optical layer to handle router node failures-one that is failure node independent and static, and the other that is failure node dependent and dynamic We develop linear programming formulations for both schemes and a fast combinatorial algorithm for the second scheme so as to maximize network throughput. In each case, we determine (i) the optimal distribution of traffic to various intermediate routers for both normal (no-failure) and failure conditions, and (ii) provisioning of optical layer circuits to provide the needed inter-router links. We evaluate the performance of the two router failure protection schemes and compare it with that of unprotected routing
机译:我们考虑在路由器上通过交换光骨干网互连的IP上光网络中实现流量忽略路由。我们考虑的流量忽略路由是一种方案,其中传入流量首先以预设方式分配给一组中间节点。然后将流量从中间节点路由到最终目的地。将路由分为两个阶段可以极大地简化网络配置。在实施该方案时,第一和第二相位路径仅在单个中间节点上通过路由器数据包整理在光学层上实现。考虑到路由器的这种不可靠性,我们考虑如何使IP光纤网络中的两相路由具有弹性,以抵抗路由器节点故障。我们提出了两种不同的方案来配置光层以处理路由器节点故障,一个方案是独立于故障节点且是静态的,另一个方案则是与故障节点相关且是动态的。我们为这两种方案开发了线性规划公式,并针对该方案开发了一种快速组合算法。第二种方案,以最大化网络吞吐量。在每种情况下,我们都将确定(i)在正常(无故障)和故障情况下到各种中间路由器的最佳流量分配,以及(ii)设置光层电路以提供所需的路由器间链路。我们评估了两种路由器故障保护方案的性能,并将其与无保护的路由进行比较

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