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Modified ShuffleNet for Multihop All-Optical WDM Networks Employing Wavelength Reuse

机译:修改后的ShuffleNet,用于利用波长复用的多跳全光WDM网络

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A modified multihop ShuffleNet configuration for WDM all-optical net- works is described which is rearrangeable and allows wavelength reuse at each node as it expands. This configuration does not require any rearrange- ment of preceding node and wavelength assignments when new nodes and wavelengths are added and it can function with fewer overall number of nodes. By comparison, the traditional Perfect ShuffleNet requires a large number of nodes to be available for any updating of the configuration. Most of these nodes remain idle during the normal signal routing process leading to reduced network link capacity. Furthermore, to facilitate wavelength reuse when updating, the Perfect ShuffleNet necessitates the rearrangement of preceding node and wavelength assignments. This leads to generalized forms of ShuffleNet where wavelength reuse forces network architecture into irregular topologies. The modified ShuffleNet proposed here is capable of facilitating wavelength reuse without the modification of initial node and wavelength assignments and could be realised by using a star topology.
机译:描述了一种针对WDM全光网络的修改后的多跳ShuffleNet配置,该配置可重新布置,并允许每个节点随着扩展扩展波长。当添加新的节点和波长时,此配置不需要重新安排先前的节点和波长分配,并且它可以在节点总数较少的情况下工作。相比之下,传统的Perfect ShuffleNet需要大量节点可用于任何配置更新。这些节点中的大多数在正常信号路由过程中保持空闲状态,从而导致网络链路容量降低。此外,为了在更新时促进波长重用,Perfect ShuffleNet必须重新安排先前的节点和波长分配。这导致了ShuffleNet的一般形式,其中波长重用迫使网络体系结构变成不规则的拓扑。此处提出的经过改进的ShuffleNet能够在不修改初始节点和波长分配的情况下促进波长重用,并且可以通过使用星形拓扑来实现。

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