光核心网的多层节能

Lin Liu, S. E. Alaoui, B. Ramamurthy
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引用次数: 1

摘要

我们提出了一种多层节能技术,旨在通过关闭网络不同层的组件来降低能耗,在我们之前的工作中,通过关闭IP层的端口获得了令人满意的节能效果,在本文中,我们通过考虑网络中的其他层来实现更多的节能目标。本文提出的模型是一种启发式模型,它基于当前时隙所需的40G链路数量来预测未来时隙的容量。它还围绕着四个参数,这些参数的值是经验设置的。我们设置了两个阈值,低和高,以及每次利用率低于或高于阈值时关闭或上电的链路数量。我们通过实验来评估我们的模型,实验采用了类似internet - 2的拓扑结构,并将一天的真实流量划分为5分钟的时间段。结果提供了不同参数设置之间的比较,以及它们如何影响能源节约和网络中由于错误预测而导致的溢出数量。也就是说,我们证明,在已知未来交通的最佳情况下,我们的模型可以减少高达90%的能源消耗;否则,在发生少量流量溢出事件的情况下,节省的费用可能在82%到88%之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-layer energy savings in optical core networks
We propose a multi-layer energy saving technique for optical core networks that aims at reducing energy consumption by powering off components in different layers of the network After obtaining satisfactory results in saving energy by powering off ports in the IP layer in our previous work in this paper we target more savings by considering additional layers in the network. The model proposed in this paper is a heuristic that bases the capacity prediction for a future time slot on the number of 40G links needed in the current time slot. It also revolves around four parameters for which the values are empirically set. We set two thresholds, low and high, as well as the number of links to power off or power on each time the utilization is below or above a threshold. We assess our model through experiments featuring an Internet2-like topology and a real one-day worth of traffic split into five-minute time slots. The results offer a comparison between different parameters settings and how they affect energy savings and the number of overflows in the network that result from mis-prediction. That said, we demonstrate that our model can achieve up to 90% reduction in energy consumption in the best case when the future traffic is known; otherwise, the savings can range between 82% and 88% with the occurrence of a small amount of traffic overflow events.
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