弹性光网络中基于p周期和最小功耗的带宽压缩恢复

D. Jaiswal, R. Asthana
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引用次数: 0

摘要

由于带宽结构灵活,受影响的业务可以在弹性光网络中部分恢复。带宽压缩恢复(BSR)是一种利用有限的频隙(FSs)最大化恢复水平的方法。然而,功耗是永无休止的巨大挑战之一。具有灵活带宽和频谱效率的eon也是功耗的主要贡献者。网络中传输的数据量非常大,网络故障会造成大量的数据丢失。为了实现这种高可靠性要求,考虑到备份保护的资源需求,在网络架构上设置了大量冗余资源。这些冗余资源也是电力消耗的主要贡献者。最短路径路由(SPR)是一种常用的节能策略。本文重点研究了在带有功率意识路由(PCR)的eon中使用预配置周期(p-cycles)来防止单链路故障的BSR。为了使功耗最小化,建立了整数线性规划(ILP)模型。功耗最小化是基于聚合酶链反应,通过将空闲网络资源的数量最大化到休眠模式。数值结果表明,在低流量时,PCR比SPR更节能,但代价是额外的频隙(FSs)。BSR提供故障发生后每个跨度内可用FSs的最大恢复级别。此外,可以看出,随着流量的增加,功耗趋于饱和。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bandwidth Squeezed Restoration using p-Cycle together with Minimum Power Consumption in Elastic Optical Networks
Due to flexible bandwidth structure, affected services can be partially restored in elastic optical networks (EONs). Bandwidth Squeezed restoration (BSR) approach maximizes restoration level with limited frequency slots (FSs) in each span. However, the power consumption is one of the great challenges in EONs. EONs with flexible bandwidth and spectrally efficient, are also major contributors in the power consumption. There is extremely large amount of data transmission in the network since network failure causes huge data loss. In order to achieve this high reliability requirement, network architectures are laid down with a large number of redundant resources taking into account the resource requirement for backup protection. These redundant resources are also major contributors to the power consumption. Shortest path routing (SPR) is generally considered in power saving strategies. This paper focuses on BSR using preconfigured cycles (p-cycles) in EONs with power conscious routing (PCR) against single link failure. An integer linear programming (ILP) model has been formulated to minimize power consumption. Minimization of power consumption is based on PCR by maximizing number of idle network resources into sleep mode. Numerical results indicate that the PCR is more power efficient than SPR during low traffic but at the cost of additional frequency slots (FSs). BSR provide the maximum restoration level with available FSs in each span after the occurrence of failure. In addition, it is seen that as the traffic increases, the power consumption saturates.
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