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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Designing Energy-Efficient Data Center Networks Using Space-Time Optical Interconnection Architectures
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Designing Energy-Efficient Data Center Networks Using Space-Time Optical Interconnection Architectures

机译:使用时空光互连架构设计节能型数据中心网络

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摘要

This paper considers a space-time interconnection architecture (STIA) based on optical devices and proposes its introduction in data center networks. The power consumption of the STIA is modeled, accounting for the energy proportionality of the optical devices in the STIA. Using such a model, a STIA-based network is designed using three different topologies, tree, folded Clos, and flattened butterfly, and optimized for power efficiency. Results show that, for a fixed topology, small-size STIAs are an energy-efficient solution for data center networks and allow a power reduction of more than an order of magnitude with respect to the Ethernet-based network. The comparison for the same bisection bandwidth shows that folded Clos and flattened butterfly outperform tree, whose power consumption is strongly dependent on the oversubscription ratio selected.
机译:本文考虑了基于光学设备的时空互连架构(STIA),并提出了将其引入数据中心网络的方法。对STIA的功耗进行了建模,考虑了STIA中光学设备的能量比例。使用这种模型,可以使用三种不同的拓扑(树,折叠Clos和扁平蝴蝶)设计基于STIA的网络,并针对电源效率进行了优化。结果表明,对于固定拓扑而言,小型STIA是数据中心网络的节能解决方案,相对于基于以太网的网络,其功耗降低了一个数量级以上。对于相同等分带宽的比较表明,折叠的Clos和扁平的蝴蝶性能优于树,其功耗在很大程度上取决于所选的超额认购比率。

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