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首页> 外文期刊>Journal of Lightwave Technology >An optical multi-mesh hypercube: a scalable optical interconnection network for massively parallel computing
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An optical multi-mesh hypercube: a scalable optical interconnection network for massively parallel computing

机译:光学多网格超立方体:用于大规模并行计算的可扩展光学互连网络

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摘要

A new interconnection network for massively parallel computing is introduced. This network is called an optical multi-mesh hypercube (OMMH) network. The OMMH integrates positive features of both hypercube (small diameter, high connectivity, symmetry, simple control and routing, fault tolerance, etc.) and mesh (constant node degree and scalability) topologies and at the same time circumvents their limitations (e.g., the lack of scalability of hypercubes, and the large diameter of meshes). The OMMH can maintain a constant node degree regardless of the increase in the network size. In addition, the flexibility of the OMMH network makes it well suited for optical implementations. This paper presents the OMMH topology, analyzes its architectural properties and potentials for massively parallel computing, and compares it to the hypercube. Moreover, it also presents a three-dimensional optical design methodology based on free-space optics. The proposed optical implementation has totally space-invariant connection patterns at every node, which enables the OMMH to be highly amenable to optical implementation using simple and efficient large space-bandwidth product space-invariant optical elements.
机译:介绍了一种用于大规模并行计算的新互连网络。该网络称为光多网超立方体(OMMH)网络。 OMMH集成了超立方体(小直径,高连接性,对称性,简单的控制和路由,容错等)和网格(恒定的节点度和可扩展性)拓扑的积极特性,同时规避了它们的局限性(例如,缺乏超立方体的可扩展性,以及网格的直径较大)。无论网络规模的增加,OMMH都可以保持恒定的节点度。此外,OMMH网络的灵活性使其非常适合光学实施。本文介绍了OMMH拓扑,分析了其架构特性和大规模并行计算的潜力,并将其与超立方体进行了比较。此外,它还提出了一种基于自由空间光学的三维光学设计方法。所提出的光学实现在每个节点上具有完全空间不变的连接模式,这使得OMMH非常适合使用简单有效的大空间带宽乘积空间不变光学元件的光学实现。

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