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Hybrid tree: a scalable optoelectronic interconnection network for parallel computing

机译:混合树:用于并行计算的可扩展光电互连网络

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The performance of parallel computer systems is increasingly limited by constraints imposed by interconnects and this limitation will inevitably become more serious as capability of each processing node increases. Optics has already proved its worth in telecommunications and more recently in interconnecting computers and computer peripherals. We propose an optical hybrid tree network which is essentially a cluster of optical binary trees interconnected with a fat tree near the root. Binary trees have favorable features such as constant node degree, small node degree, scalability, etc., however, in a conventional binary tree, the traffic towards the root of the tree is very heavy and hence a fat tree structure in which branches get thicker towards the root has been employed in computers such as the CM-5 from Thinking Machines. Use of optical channels results in increased bandwidth per channel and we suggest that the high bandwidth of optical interconnects and channels enables the use of binary tree topology for several levels of a tree network without congestion or traffic problems. We demonstrate that optical binary trees work satisfactorily for 7 to 10 levels higher than binary electrical trees. A 1024 node parallel machine can be built using binary trees alone if the interconnection network uses optical technology for the links and routers. We present the design of optical hybrid trees and perform a comparison of electrical and optical binary trees.
机译:并行计算机系统的性能越来越受到互连所施加的约束的限制,并且随着每个处理节点容量的增加,这种限制将不可避免地变得更加严重。光学已经在电信领域证明了自己的价值,最近在互连计算机和计算机外围设备方面也证明了自己的价值。我们提出了一种光学混合树网络,该网络本质上是与根附近的胖树互连的光学二叉树的集群。二叉树具有良好的特性,例如恒定的节点度,较小的节点度,可伸缩性等,但是,在常规的二叉树中,流向树根的流量非常大,因此胖树结构中的分支变得更粗向根的方向已经在Think Machines的CM-5等计算机中使用。使用光通道会增加每个通道的带宽,我们建议光互连和通道的高带宽可以在树状网络的多个级别上使用二叉树拓扑,而不会出现拥塞或流量问题。我们证明,与二进制电气树相比,光学二进制树可令人满意地工作7到10个级别。如果互连网络将光学技术用于链路和路由器,则仅可使用二进制树来构建1024节点并行机。我们介绍了光混合树的设计,并对电和光二叉树进行了比较。

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