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An Optical Network Architecture With Distributed Switching Inside Node Clusters Features Improved Loss, Efficiency, and Cost

机译:在节点集群内部具有分布式交换的光网络架构,可改善损耗,效率和成本

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The novel core network architecture presented in this paper realizes distributed all-optical switching of payload by partitioning the network into a number of geographically limited domains, where two-way reservations are effective. Thus, inside each domain, loss is eliminated, while traffic from many nodes can be aggregated into single bursts, improving efficiency. Clustered nodes contribute contiguous optical slots, which are marshaled into composite optical frames destined for other clusters, under the guidance of a reservation-based control protocol. The lossless aggregation of traffic from several core nodes allows the use of cost-effective bufferless all-optical transport among the domains with electrical buffers employed at the periphery of the system. The end result is a triple improvement in loss probabilities, efficiency, and cost. This is achieved by exploiting three features of the architecture: the distributed switching functionality (as in early LANs when centralized switching was expensive), localized reservations (avoiding the intolerable delays of end-to-end reservations), and a reduced number of source-destination pairs (by means of node clustering into reservation domains)
机译:本文提出的新颖的核心网络体系结构通过将网络划分为多个地理受限的域(双向保留有效)来实现有效载荷的分布式全光交换。因此,在每个域内,可以消除损失,同时可以将来自许多节点的流量聚合为单个突发,从而提高效率。群集节点贡献了连续的光时隙,在基于预留的控制协议的指导下,这些光时隙被编组为目的地为其他群集的复合光帧。来自几个核心节点的流量的无损聚合允许在域之间使用具有成本效益的无缓冲全光传输,并在系统外围使用电缓冲器。最终结果是损失概率,效率和成本提高了三倍。这是通过利用该体系结构的三个功能来实现的:分布式交换功能(如在早期LAN中集中式交换价格昂贵的情况),本地化预留(避免端到端预留的无法忍受的延迟)以及减少源数量-目标对(通过将节点聚类到保留域中)

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