Novel techniques for deploying monitoring trails (m-trails) for fault localization in all-optical networks

K. Maamoun, H. Mouftah
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引用次数: 7

Abstract

In this paper, desirable performance of fault localization process in all-optical networks is presented by employing the recently introduced Monitoring-Trail (m-trail) (that was proved to yield better performance by establishing monitoring resources in a shape of trails) [1]. As well, new techniques for deploying m-trails on networks along with its established lightpaths to perform fault localization are introduced. A novel technique based on Geographic Midpoint and the use of pair-wise shortest-paths that employ the standard Dijkstra algorithm, an adapted Chinese Postman's Problem (CPP) solution and adapted Traveling Salesman's Problem (TSP) solution algorithms. In addition, a manual exercise method can be directly applied to the ACT table. Different examples are given to illustrate these techniques with a brief description on its establishment algorithms. Using m-trails with established lightpaths to perform fault localization is a superb technique as it saves network resources; by reducing the number of the m-trails required for fault localization and hence the number of wavelengths used in the network [1].
在全光网络中部署监测轨迹(m-trails)用于故障定位的新技术
本文采用最近引入的监测轨迹(monitoring -trail, m-trail)(通过建立轨迹形状的监测资源,可以获得更好的性能),给出了全光网络故障定位过程的理想性能[1]。此外,还介绍了在网络上部署m-trails及其已建立的光路以执行故障定位的新技术。一种基于地理中点和使用成对最短路径的新技术,采用标准的Dijkstra算法,一种改编的中国邮差问题(CPP)解决方案和改编的旅行推销员问题(TSP)解决方案算法。另外,手工练习的方法可以直接应用到ACT表中。给出了不同的实例来说明这些技术,并简要描述了其建立算法。使用m-trails与已建立的光路进行故障定位是一种极好的技术,因为它节省了网络资源;通过减少故障定位所需的m-trail的数量,从而减少网络中使用的波长数量[1]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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