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A scalable design of multigranularity optical cross-connects for the next-generation optical Internet

机译:下一代光学互联网的多粒度光学交叉连接的可扩展设计

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This paper proposes a scalable design for next-generation optical cross-connects (OXCs). We present a novel strategy for dimensioning the switching capability as a long term planning. Switching fabrics in OXCs have to be expanded according to traffic growth, which may incur a scalability problem due to the exponentially increasing cost in manufacturing and maintenance. The proposed scheme expands the switching capacity of OXCs with waveband- and fiber-switching components (or, equivalently, expands the network capacity with 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 (RWA) with tunnel allocation (RWAT) into a constraint programming (CP) process. The CP is simplified as two integer linear programming (ILP) processes that are performed sequentially. Experiments are conducted on four examples to compare the throughput and the number of switching points when different switching architectures are adopted under different traffic increase. The benefits of our approach are demonstrated. Finally, we conclude that the proposed optimization scheme can dimension the networks with expandability and scalability to the growing traffic demand.
机译:本文提出了用于下一代光学交叉连接(OXC)的可扩展设计。我们提出了一种新的策略,用于作为长期计划来确定交换能力。必须根据业务量的增长来扩展OXC中的交换结构,由于制造和维护成本成倍增加,这可能会引起可伸缩性问题。提出的方案通过波段和光纤交换组件扩展了OXC的交换容量(或者,等效地,通过波段和光纤交换层扩展了网络容量)。为了最小化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(RWA)问题表述为约束规划(CP)过程。 CP简化为顺序执行的两个整数线性编程(ILP)过程。在四个实例上进行了实验,比较了在不同流量增加情况下采用不同交换架构时的吞吐量和交换点数。我们的方法的好处得到了证明。最后,我们得出结论,所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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