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A novel design of optical cross-connects with multi-granularity provisioning support for the next-generation Internet

机译:光学交叉连接的新颖设计,支持下一代互联网的多粒度配置

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This paper proposes a scalable design for next-generation optical cross-connects (OXCs), where a novel strategy for dimensioning the network switching capability as a long term planning is presented. When traffic demand grows, the proposed scheme simply expands the switching capacity of OXCs in waveband- and fiber-switching tiers. To minimize the number of extra fibers for waveband- and fiber-switching tiers required to satisfy a given traffic matrix, we formulate the problem of routing and wavelength assignment with tunnel allocation (RWAT) into two integer linear programming (ILP) processes that are performed sequentially. Experiments are conducted on two sample networks to compare the throughput and the number of switch points when the networks adopt different switching architectures with different traffic loads. We conclude that the proposed optimization scheme can dimension the networks with expandability and scalability to the growing traffic demand.
机译:本文提出了一种用于下一代光交叉连接(OXC)的可扩展设计,其中提出了一种用于长期规划网络交换能力的新策略。当流量需求增长时,所提出的方案仅扩展了波段和光纤交换层中OXC的交换容量。为了最大程度地减少满足给定流量矩阵所需的波段和光纤交换层的额外光纤数量,我们将具有隧道分配(RWAT)的路由和波长分配问题表述为两个整数线性规划(ILP)过程,该过程执行按顺序。在两个示例网络上进行了实验,以比较当网络采用具有不同流量负载的不同交换体系结构时的吞吐量和交换点数。我们得出的结论是,提出的优化方案可以通过不断扩展的流量和可扩展性来确定网络的尺寸。

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