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首页> 外文期刊>Journal of Lightwave Technology >Multicast Routing and Distance-Adaptive Spectrum Allocation in Elastic Optical Networks With Shared Protection
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Multicast Routing and Distance-Adaptive Spectrum Allocation in Elastic Optical Networks With Shared Protection

机译:具有共享保护的弹性光网络中的组播路由和距离自适应频谱分配

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摘要

We consider an elastic all-optical network, where each node is multicast-capable and does not support spectrum conversion. In such a network, for a given set of static multicast demands, we consider distance-adaptive spectrum resource allocation, and aim to optimize multicast routing, modulation, and spectrum assignment with shared protection in a way that minimizes the required spectrum resources for accommodating all multicast sessions. In our design, we provision each multicast demand by a light-tree where spectrum resources are allocated in all links included in the tree. We protect each light-tree from any single link failure in both directions by having a backup path that is link-disjoint to the path from the source to each destination on the primary tree. We reserve spectrum resources in the links that are not in the primary tree but in the backup paths between all source-destination pairs. The reserved spectrum resources can be shared to protect multiple light-trees as long as they do not fail simultaneously. For such a problem, we provide a mixed integer linear programming formulation. We also develop a scalable heuristic algorithm with an attribute that enables it to improve the quality of the results at the cost of longer running times. Numerical results for small problems show that the heuristic algorithm performs close to the optimum. In addition, we use a Markov chain simulation of the network to evaluate the performance of our proposed algorithm in terms of blocking probability in a dynamic environment, which demonstrates a significant improvement over straightforward approaches.
机译:我们考虑一个弹性的全光网络,其中每个节点都具有多播功能,并且不支持频谱转换。在这样的网络中,对于给定的一组静态多播需求,我们考虑距离自适应频谱资源的分配,并以共享保护的方式优化多播路由,调制和频谱分配,以最大程度地减少容纳所有频谱资源所需的频谱资源。多播会话。在我们的设计中,我们通过一棵轻树来设置每个多播需求,在该树中,频谱资源被分配到该树中的所有链路中。我们通过使备份路径与主树上从源到每个目标的路径不相连,来保护每个轻树在两个方向上均不受单个链路故障的影响。我们将频谱资源保留在不在主树中但在所有源-目标对之间的备用路径中的链路中。保留的频谱资源可以共享以保护多个光树,只要它们不会同时发生故障即可。对于这样的问题,我们提供了一个混合整数线性规划公式。我们还开发了一种可扩展的启发式算法,该算法具有使其能够以更长的运行时间为代价来提高结果质量的属性。小问题的数值结果表明,启发式算法的性能接近最佳值。另外,我们使用网络的马尔可夫链仿真来评估我们提出的算法在动态环境中的阻塞概率方面的性能,这表明了对简单方法的重大改进。

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