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Dynamic provisioning strategies for energy efficient WDM networks with dedicated path protection

机译:具有专用路径保护的高能效WDM网络的动态配置策略

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摘要

Energy consumption in optical backbone networks is increasing due to two main reasons: (i) the exponential growth of bandwidth demands, and (ii) the increase in availability requirements in order to guarantee protection of the ultra high capacity optical channels provided by wavelength division multiplexing (WDM) networks. Although state of the art reliability mechanisms are very efficient in guaranteeing high availability, they do not consider the impact of the protection resources on the network's energy consumption. Dedicated (1:1) path protection (DPP) is a well-known mechanism that provides one extra link—disjoint path for the protection of a connection request. This secondary path is reserved and maintained in an active mode even though it is not utilized most of the time. This means that in-line optical amplifiers and switching nodes/ports are always consuming power even when they are not used to reroute any primary traffic. Moreover secondary paths are on average longer than their respective primary paths. These observations motivated us to investigate the energy savings, when all unused protection resources can be switched into a low-power, stand-by state (or sleep mode) during normal network operation and can be activated upon a failure. It is shown that significant reduction of power consumption (up to 25%) can be achieved by putting protection resources into sleep mode. Moreover, in order to enhance this energy saving figure, this paper proposes and evaluates different energy-efficient algorithms, specifically tailored around the sleep mode option, to dynamically provision 1:1 dedicated path protected connection. The trade-off between energy saving and blocking probability is discussed and an efficient mechanism to overcome this drawback is devised. Our results reveal that a 34% reduction of energy consumption can be obtained with a negligible impact on the network's blocking performance.
机译:光骨干网中的能耗在增加,原因有两个:(i)带宽需求呈指数增长,以及(ii)可用性需求增加,以确保保护由波分复用提供的超高容量光信道(WDM)网络。尽管最先进的可靠性机制在保证高可用性方面非常有效,但是它们并未考虑保护资源对网络能耗的影响。专用(1:1)路径保护(DPP)是一种众所周知的机制,它提供了一个额外的链接-用于保护连接请求的不相交路径。即使大部分时间未使用该辅助路径,该路径仍保留并保持为活动模式。这意味着即使不使用串联光放大器和交换节点/端口也不重新路由任何主要流量,也总是在消耗功率。而且,次级路径平均比它们各自的初级路径更长。当所有未使用的保护资源可以在正常网络运行期间切换到低功率,待机状态(或睡眠模式)并且在出现故障时可以被激活时,这些观察结果促使我们进行节能研究。结果表明,通过将保护资源置于睡眠模式,可以显着降低功耗(最多降低25%)。此外,为了提高这一节能指标,本文提出并评估了不同的节能算法,这些算法专门针对睡眠模式选项而定制,以动态设置1:1专用路径保护连接。讨论了节能与阻塞概率之间的权衡,并设计了克服此缺点的有效机制。我们的结果表明,可以将能耗降低34%,而对网络的阻塞性能的影响可以忽略不计。

著录项

  • 来源
    《Optical Switching and Networking》 |2011年第3期|p.201-213|共13页
  • 作者单位

    Royal Institute ofTechnology KTH, School of Information and Communication Technology, Isafjordsgatan 22, Electrum 229, 164 40 Kista, Sweden;

    Royal Institute ofTechnology KTH, School of Information and Communication Technology, Isafjordsgatan 22, Electrum 229, 164 40 Kista, Sweden;

    Royal Institute ofTechnology KTH, School of Information and Communication Technology, Isafjordsgatan 22, Electrum 229, 164 40 Kista, Sweden;

    Royal Institute ofTechnology KTH, School of Information and Communication Technology, Isafjordsgatan 22, Electrum 229, 164 40 Kista, Sweden;

    Athens Information Technology (AIT), 19.5 Markopoulo Av., P.O. Box 68,19002 Peania, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    green networks; energy-aware; power efficiency; dedicated path protection; survivable wdm networks;

    机译:绿色网络;能源意识;功率效率;专用路径保护;可生存的WDM网络;

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