Hardware-based monitoring method for all-optical components

A. Jedidi, R. Rejeb, B. Rejeb, M. Abid, M. Leeson, R. Green
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引用次数: 5

Abstract

In emerging all-optical networks (AONs), efficient monitoring and estimation of signal quality along a lightpath are of highest interest because of their importance in diagnosing and assessing the overall health of the network. This is because transmission in these networks is limited by a number of effects such as optical crosstalk and amplified spontaneous emission. In particular, crosstalk is additive and can be exploited to perform service disruption attacks upon the whole network. Since these attacks can spread rapidly through the network, causing additional awkward failures and triggering multiple undesirable alarms, they must be detected and identified at any point in the network where they may occur. Due to network transparency, this requires particularly the availability of expert diagnostic techniques to measure and control the smallest granular component, the wavelength channel. However, to monitor all wavelengths at several detection points in a node is likely to be a very expensive solution. In this paper we briefly overview optical crosstalk mechanisms that arise in AON components. We then propose a hardware-based method for monitoring performance degradation in AON components that can participate in some tasks for performance management of AONs.
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基于硬件的全光器件监控方法
在新兴的全光网络(aon)中,沿光路的信号质量的有效监测和估计是最感兴趣的,因为它们对诊断和评估网络的整体健康状况非常重要。这是因为这些网络中的传输受到一些效应的限制,如光串扰和放大的自发发射。特别是,串扰是附加的,可以被利用来对整个网络执行服务中断攻击。由于这些攻击可以在网络中迅速传播,导致额外的尴尬故障并触发多个不希望的警报,因此必须在网络中可能发生攻击的任何点检测和识别它们。由于网络的透明性,这特别需要专家诊断技术的可用性来测量和控制最小的颗粒成分,即波长通道。然而,在一个节点的几个检测点上监测所有波长可能是一个非常昂贵的解决方案。本文简要介绍了光串扰在AON器件中产生的机理。然后,我们提出了一种基于硬件的方法来监控AON组件的性能下降,这些组件可以参与AON的一些性能管理任务。
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