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Can Energy-Aware Routing Improve the Energy Savings of Energy-Efficient Ethernet?

机译:节能路由能否提高节能以太网的节能水平?

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摘要

Telecommunication networks are over-provisioned with redundant resources in order to cope with traffic load during peak hours and to quickly recover from failures. However, much of the resources are underutilized during long periods of time, but still consuming full energy. With the growing concerns of energy waste and greenhouse gas emissions, the network design principles tend to shift towards allocation of resources on-demand for energy-efficiency. In this paper, we analyze and evaluate the performance of two different energy-saving techniques, namely energy saving topology control (ESTOP) and energy-efficient Ethernet (EEE). We investigate the energy-saving characteristics of ESTOP+EEE; the combination of ESTOP and EEE. The evaluation is conducted in OMNet++ with realistic and synthetic network topologies under varying traffic conditions. The results indicate that the combination has a significant potential for saving energy, compared to running ESTOP or EEE alone, but that the amount of energy savings depends on topology, traffic load, and the chosen target connectivity level for ESTOP. In particular, the results show that the target connectivity level needs to be carefully matched to the topology and the current traffic situation, suggesting that ESTOP+EEE would be suitable where the target connectivity level is dynamically adjusted according to traffic variations.
机译:电信网络超额配置了冗余资源,以应对高峰时段的流量负载并快速从故障中恢复。但是,很多资源在很长一段时间内都没有得到充分利用,但是仍然消耗着全部能量。随着对能源浪费和温室气体排放的日益关注,网络设计原则趋向于按需分配资源以提高能效。在本文中,我们分析和评估了两种不同的节能技术的性能,即节能拓扑控制(ESTOP)和节​​能以太网(EEE)。我们研究了ESTOP + EEE的节能特性; ESTOP和EEE的组合。该评估是在OMNet ++中使用各种流量条件下的实际和综合网络拓扑进行的。结果表明,与单独运行ESTOP或EEE相比,该组合具有显着的节能潜力,但是节能量取决于拓扑,流量负载以及为ESTOP选择的目标连接级别。特别是,结果表明,目标连接级别需要与拓扑和当前流量状况进行仔细匹配,这表明ESTOP + EEE适用于根据流量变化动态调整目标连接级别的情况。

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