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Upgradable photonic slot routing networks to core with increasing capacity demands

机译:可升级的光子插槽路由网络以越来越容易需求的核心

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Recently, Photonic Slot Routing (PSR) has been proposed as a practical solution for achieving optically transparent communication in Wavelength Division Multiplexing (WDM) wide-area networks. PSR makes use of available and simple wavelength-non-sensitive optical devices to switch data flows at different wavelengths, but in the same time slot, as a single unit. It thereby trades switching node complexity for network performance. With continuing traffic growth, the need to increase the network performance will, however, inevitably arise. As optical device technology progresses, it will become feasible to implement more complex switching nodes that can perform Individual Switching of Wavelengths within a time slot (IWS). While IWS nodes can be expected, at least in the beginning, to be more costly than PSR nodes, they offer increased switching flexibility, thereby potentially improving the network performance. This paper presents a solution that supports a gradual migration from a PSR-based network to an IWS-based network, by replacing selected PSR nodes with IWS nodes. We show that with a controlled migration towards an IWS-based network it is possible to gradually increase the capacity of the network to cope with increasing traffic demands. An important property of the solution is that upgrading a PSR node to an IWS node does not require any changes to the other nodes, or the network layout. In addition, using the NSFNET backbone topology as a benchmark, the paper shows that with an 80% PSR and 20% IWS network almost 50% of the performance reduction incurred by slot routing can be recovered.
机译:最近,光子插槽路由(PSR)已被提出作为用于实现在波分复用(WDM)光学透明的通信的实际的解决方案的广域网。 PSR利用可用的和简单的波长不敏感的光学装置的到开关数据流在不同的波长,但在相同的时隙中,作为一个单元。它因此交易交换节点的复杂网络性能。随着持续的流量增长,需要增加将,但是,不可避免地出现了网络性能。作为光学装置的技术进步,它将成为实现能够时隙(IWS)内执行的波长单独的开关更复杂的交换节点是可行的。虽然IWS节点可以预计,至少在开始的时候,比PSR节点更昂贵,他们提供更高的灵活性切换,从而潜在地提高了网络性能。本文提出了一种解决方案,支持从基于PSR-网络到基于IWS-网络逐步迁移,通过用IWS节点替换选择PSR节点。我们表明,向基于IWS-网络控制的迁移,可以逐渐增加,以应付日益增加的交通需求,网络的容量。该解决方案的一个重要特性是升级PSR节点到节点IWS不需要任何改变到其他节点,或者在网络的布局。另外,使用NSFNET骨干网的拓扑结构为基准,纸张表明,用80%的PSR和20%IWS网络通过槽路由引起的性能降低几乎50%的可被回收。

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