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Threshold based Selective Link Restoration for Optical WDM Mesh Networks

机译:基于阈值的光学WDM网状网络的选择性链接恢复

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This paper studies the problem of providing failure recovery in optical wavelength division multiplexed (WDM) networks. One of the mechanisms widely studied is reactive link restoration, where recovery is provided by determining paths around a failed link after the failure occurrence. This is characterized by efficient resource utilization (since recovery capacity need not be reserved ahead of time), fast failure signaling rate and scalability. However, one of its main drawbacks is the inability to provide any guarantee of restoration. The restoration efficiency also reduces as the overall network load increases due to a reduced probability of finding a restoration route as a result of limited available spare capacity. In contrast, proactive protection mechanisms reserve backup capacity during connection setup. Here, resources may go unused if failures are not frequent thus leading to lower resource utilization. This paper proposes a hybrid protection-restoration mechanism, called threshold-based selective link restoration, that attempts to improve the overall restoration efficiency provided by link restoration. The proposed mechanism pro-actively reserves bandwidth similar to pre-planned protection, but only for a subset of the network links and at times of need as determined by a predefined policy. This paper considers two policies using which the threshold is determined: (i) per-link load and (ii) per-link reliability. The paper presents a detailed performance comparison of the proposed restoration mechanism with dynamic restoration and presents a study of the trade-off between network provisioning and restoration efficiency. The simulation results indicate that under high loads, the proposed mechanism maintains a consistent restoration efficiency of at least 10% or higher when compared to dynamic restoration.
机译:本文研究了光波分复用(WDM)网络中提供故障恢复的问题。广泛研究的一种机制是反应连接恢复,其中通过在故障发生之后确定围绕故障链路的路径来提供恢复。这是以有效的资源利用率(由于恢复容量不需要提前保留),快速故障信令率和可扩展性。然而,其主要缺点之一是无法提供恢复的任何保证。由于由于由于可用备用容量有限地找到恢复路径的概率而增加,恢复效率也降低了整体网络负载。相比之下,主动保护机制在连接设置期间保留备份容量。在这里,如果失败不频繁导致资源利用率,则资源可能会未使用。本文提出了一种混合保护 - 恢复机制,称为基于阈值的选择性链路恢复,其试图提高链路恢复提供的整体恢复效率。所提出的机制可以主动保留类似于预先计划预定保护的带宽,但仅针对网络链路的子集以及需要通过预定义的策略确定的需求。本文考虑了使用该阈值确定的两个策略:(i)每连杆负载和(ii)的每连杆可靠性。本文提出了具有动态恢复的提出的恢复机制的详细性能比较,并提出了网络供应与恢复效率之间的权衡研究。仿真结果表明,与动态恢复相比,所提出的机构在高负荷下保持一致的恢复效率至少为10%或更高。

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