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Energy saving in access networks: Gain or loss from the cost perspective?

机译:接入网的节能:从成本角度来看是赢还是亏?

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Energy consumption in telecommunication networks has become a significant problem during the last few years. Many energy efficient mechanisms have been proposed and evaluated with respect to their impact on the overall network performance (e.g., delay, blocking probability, quality of transmission). Most of these mechanisms are based on the sleep mode functionality, i.e., a “low power” state of network devices that can be utilized in low traffic conditions. On the other hand, a frequent switching between a working and a sleeping state may increase the probability of failures in a device, which in turn makes the operational cost related to fault reparation higher. This paper discusses how sleep mode-based energy saving mechanisms can impact the reliability performance of network equipment by pointing out several physical phenomena that may lead to an increase of the failure rate. In order to quantify such effects we propose a methodology that estimates to what extent energy savings can be maximized without exceeding the extra reparation cost caused by the degradation of the reliability performance of network equipment due to frequent switching on and off. We perform a number of simulative studies focused on an optical access segment and show that the cost saved by reducing the energy consumption (i.e., as the result of a power efficient mechanism) may be easily overcome by the extra expenses related to reparation of network equipment and service interruption for business users.
机译:在过去的几年中,电信网络中的能耗已成为一个重要的问题。已经提出了许多节能机制,并且就其对整体网络性能的影响(例如,延迟,阻塞概率,传输质量)进行了评估。这些机制中的大多数都基于睡眠模式功能,即可以在低流量条件下使用的网络设备的“低功耗”状态。另一方面,在工作状态与睡眠状态之间频繁切换可能会增加设备发生故障的可能性,进而使与故障修复相关的操作成本更高。本文通过指出几种可能导致故障率增加的物理现象,讨论了基于睡眠模式的节能机制如何影响网络设备的可靠性。为了量化这种影响,我们提出了一种方法,可以估算在不超出因频繁接通和断开而导致网络设备的可靠性性能下降而导致的额外赔偿成本的情况下,可以最大程度地节省能源的程度。我们针对光接入段进行了许多模拟研究,结果表明,通过减少能耗(即通过省电机制的结果)而节省的成本可以很容易地由与修复网络设备有关的额外费用来克服。以及业务用户的服务中断。

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