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Adjacent Link Failure Localization With Monitoring Trails in All-Optical Mesh Networks

机译:全光网状网络中带有监视路径的相邻链路故障本地化

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摘要

Being reported as the most general monitoring structure for out-of-band failure localization approach, the monitoring trail (m-trail) framework has been witnessed with great efficiency and promises to serve in the future Internet backbone with all-optical mesh wavelength division multiplex (WDM) networks. Motivated by its potential and significance, this paper investigates failure localization in all-optical mesh networks using m-trails. By considering shared risk link groups (SRLGs) with up to all adjacent links of any node in the network, a novel algorithm of m-trail allocation for achieving unambiguous failure localization (UFL) of any single SRLG failure is developed. The proposed algorithm aims to minimize the number of required m-trails and can achieve superb performance with respect to the computation efficiency. We claim that among all the previously reported counterparts, this paper has considered one of the most applicable scenarios to the design of network backbone, and the proposed method can be easily extended to the case of node failure localization. Extensive simulation is conducted to verify the proposed algorithm in comparison to its existing counterparts.
机译:作为带外故障定位方法的最通用监视结构,监视跟踪(m-trail)框架已被证明是高效的,并有望在未来的Internet主干中使用全光网状波分复用(WDM)网络。由于其潜力和意义,本文研究了使用m-trails的全光网状网络中的故障定位。通过考虑具有网络中任何节点的所有相邻链路的共享风险链路组(SRLG),开发了一种新颖的m-trail分配算法,用于实现任何单个SRLG故障的明确故障定位(UFL)。所提出的算法旨在最小化所需的m-trails的数量,并且在计算效率方面可以实现一流的性能。我们认为,在所有先前报道的对应对象中,本文已考虑了最适合网络骨干网设计的方案之一,并且该方法可以轻松地扩展到节点故障定位的情况。与现有算法相比,进行了广泛的仿真以验证所提出的算法。

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