在数据中心网络中引入光交换的能效效益

Artur Pilimon, Alexandra Zeimpeki, A. M. Fagertun, S. Ruepp
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引用次数: 4

摘要

本文分析了wdm增强光电路交换对多数据中心网络(DCN)体系结构功耗的影响。评估了传统的三层树结构、胖树结构和环结构,并在网络拓扑的不同层选择性地引入光交换。该分析基于网络级模拟,使用传输网络规划工具应用于所考虑的dcn的小规模设置。结果表明,在DCN中引入全光交换可以降低除传统Tree外的所有架构的功耗。这是由于该架构无法执行有效的流量疏导和较小的平均节点度造成的。在Fat-Tree和传统Tree中,仅在汇聚层启用光交换的节能效果最高,而在环网中,光交换核心的效益最大。对于后者,核心环节点在中继接口上需要更少的长程转发器,并且在接入部分受益于更有效的流量疏导。
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Energy efficiency benefits of introducing optical switching in Data Center Networks
In this paper we analyze the impact of WDM-enhanced optical circuit switching on the power consumption of multiple Data Center Network (DCN) architectures. Traditional three-tier Tree, Fat-Tree and a ring-based structure are evaluated and optical switching is selectively introduced on different layers of the network topology. The analysis is based on network-level simulations using a transport network planning tool applied to small-scale setups of the considered DCNs. The obtained results show that introducing all-optical switching within the DCN leads to reduced power consumption in all architectures, except the traditional Tree. This is caused by the inability to perform efficient traffic grooming and smaller average nodal degree of this architecture. Enabling optical switching only at the aggregation layer results in the highest energy savings in Fat-Tree and traditional Tree, while an optically switched core benefits most the ring-based network. For the latter, the core ring nodes need fewer long-reach transponders at the trunk interfaces and benefit from more efficient traffic grooming in the access part.
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