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A comparative study of one-to-many WDM lightwave interconnection networks for multiprocessors

机译:多处理器一对多WDM光波互连网络的比较研究

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Most of the proposed architectures for interconnecting processors in parallel systems are based on graph topologies. Recently, one-to-many topologies based on the hypergraph theory have emerged, taking advantage of the wavelength division multiplexing (WDM) technology that allows the huge bandwidth of optical fiber to be divided into several high-speed channels. One such channel can then be seen as a logical attribute shared among many processors. In this paper, we compare some hypergraph-based WDM lightwave networks in terms of simulated packet delivery time, average number of hops, link utilization, and throughput. We conclude that the bus-mesh, the hypertorus, and the stack-torus are very good candidates for implementing optical interconnection networks in future parallel systems.
机译:提出的用于在并行系统中互连处理器的大多数体系结构都是基于图形拓扑的。近来,基于超图理论的一对多拓扑已经出现,它利用了波分复用(WDM)技术,该技术允许将巨大的光纤带宽划分为几个高速通道。然后,可以将这样一个通道视为许多处理器之间共享的逻辑属性。在本文中,我们从模拟包传输时间,平均跳数,链路利用率和吞吐量方面比较了一些基于超图的WDM光波网络。我们得出的结论是,总线网,hypertorus和stack-torus非常适合在未来的并行系统中实现光互连网络。

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