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Energy-efficiency of protected IP-over-WDM networks with sleep-mode devices

机译:具有睡眠模式设备的受保护IP-WDM网络的能源效率

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Recently, the need for energy-efficient and sustainable capacity growth has become stringent for telecommunication networks and great efforts have been produced to reduce their power consumption. Optical technologies based on Wavelength Division Multiplexing are well-recognized as a promising solution for greening the future Internet. One relevant approach to achieve such power savings consists in aggregating traffic flows in few network links, so that power can be saved by switching-off some unused network devices. However, the need to ensure network resiliency against link and/or node failures imposes that still the resources reserved to protect connections become available immediately after a failure occurs. Therefore, a possible solution is to set some devices into low-power sleep-mode, so that they can be rapidly re-activated and provide fast connection recovery. In this paper we focus on the power-efficiency of protected IP-over-WDM networks and provide a comprehensive comparison of four different protection strategies, namely Shared-Link, Shared-Path, Dedicated-Link and Dedicated-Path Protection (SLP, SPP, DLP and DPP respectively) in a sleep-mode scenario. In the proposed design strategies we assume that low-power sleep-mode is enabled for devices used for protection. Mathematical models for a power-aware design with sleep-mode is proposed for the four protection strategies. We show that relevant power savings (up to about 60%) can be obtained for all the protection strategies by setting protection devices into sleep-mode.
机译:近来,对于电信网络而言,对节能和可持续容量增长的需求已变得迫切,并且已经做出了巨大的努力来降低其功耗。基于波分复用的光学技术已被公认为是绿色化未来互联网的有前途的解决方案。实现这种节电的一种相关方法是聚合少数网络链路中的流量,以便可以通过关闭一些未使用的网络设备来节省电力。但是,需要确保网络弹性以应对链路和/或节点故障,这使得保留用于保护连接的资源仍然可以在故障发生后立即变为可用。因此,一种可行的解决方案是将某些设备设置为低功耗睡眠模式,以便可以快速将其重新激活并提供快速的连接恢复。在本文中,我们将重点放在受保护的IP-over-WDM网络的功率效率上,并提供四种不同保护策略的全面比较,即共享链路,共享路径,专用链路和专用路径保护(SLP,SPP ,分别为DLP和DPP)。在提出的设计策略中,我们假设为用于保护的设备启用了低功耗睡眠模式。针对四种保护策略,提出了具有睡眠模式的功耗感知设计的数学模型。我们表明,通过将保护设备设置为睡眠模式,可以为所有保护策略节省大约60%的功率。

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