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Strategies and Services for Energy Efficiency in Real-Time Ethernet Networks

机译:实时以太网网络中的能效策略和服务

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The IEEE 802.3az amendment to the Ethernet standard, referred to as energy-efficient Ethernet (EEE), encompasses the new low power Idle operational mode that allows to strongly decrease the energy consumption of inactive links. The introduction of EEE in real-time industrial communications represents an interesting topic currently addressed by the scientific community, as well as by some standardization bodies. The outcomes of these activities are promising, since effective EEE strategies can be devised, and are able to cope with the very tight timing requirements of industrial communication. Unfortunately, the proposed analyses do not address implementation issues that, conversely, represent a crucial aspect in this scenario. Hence, in this paper, we specifically focus on practical issues concerned with the adoption of EEE strategies by real-time Ethernet (RTE) networks. At first, we address the use of commercially available network components and describe a measurement setup that can be adopted to achieve the adequate characterization of such components. Furthermore, we show that, in an RTE perspective, link activations/deactivations should be independently managed by suitably designed EEE strategies at the application level. Consequently, we defined a set of network services that have to be made available in the device drivers. Hence, we consider a generic RTE network and discuss methods for the practical implementation of those EEE strategies. A performance assessment carried out via theoretical models as well as numerical simulations shows that EEE strategies can be effectively implemented with considerable power savings at the expense of only minimal performance degradation.
机译:对以太网标准的IEEE 802.3az修正案(称为节能以太网(EEE))包含新的低功耗空闲操作模式,该模式可大大降低非活动链路的能耗。在实时工业通信中引入EEE代表了科学界和一些标准化机构当前正在解决的有趣话题。这些活动的结果是有希望的,因为可以设计出有效的EEE策略,并且能够应对非常严格的工业通信时间要求。不幸的是,所提出的分析并未解决相反的实施问题,这些问题代表了这种情况下的关键方面。因此,在本文中,我们特别关注与实时以太网(RTE)网络采用EEE策略有关的实际问题。首先,我们着重介绍了商用网络组件的使用,并描述了可用于实现此类组件足够特性的测量设置。此外,我们显示,从RTE的角度来看,应通过在应用程序级别上适当设计的EEE策略来独立管理链路激活/停用。因此,我们定义了必须在设备驱动程序中提供的一组网络服务。因此,我们考虑一个通用的RTE网络,并讨论这些EEE策略的实际实施方法。通过理论模型和数值模拟进行的性能评估表明,可以以最小的性能下降为代价,有效地实施EEE策略并节省大量功率。

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