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An adaptive probe selection mechanism for k-link fault diagnosis on all-optical mesh networks

机译:用于全光网状网络的k链路故障诊断的自适应探头选择机制

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In recent years, the most of studies on link fault diagnosis can only localize a faulty area with some uncertain links while link failures occurred. In order to overcome this issue, the core concept of k-link fault diagnostic capability is introduced in this research on all-optical mesh networks (AONs). According to this concept, the accuracy of fault diagnostic capability can be guaranteed so that the telecommunication and internet service operators can set a number of link faults k as the level of fault tolerance according to their needs on fault management. In addition, to meet the cost-effective objectives under each level of k, the probe numbers and the total probe length need to be optimal. Yet, these two factors are the negative correlation to each other, thus we propose a heuristic method, named an adaptive probe selection algorithm (PSA), to satisfy this trade-off issue. Finally, in order to better reflect the configuration facts and the establishment requirements on metro-edge fiber-optic networks, we adopt bi-directional links on the networks as example environments. It is because the one-way transmission characteristic of optical fibers is often overlooked. According to above, the simulations will demonstrate and compare the efficiency between different methods and networks, and the performance evaluation reveals that our method can function equally well even with large and complex networks.
机译:近年来,大多数关于链路故障诊断的研究只能在出现链路故障的情况下将故障区域定位为一些不确定的链路。为了克服这个问题,本研究在全光网状网络(AON)上引入了k链路故障诊断能力的核心概念。根据该概念,可以保证故障诊断能力的准确性,从而使电信和互联网服务运营商可以根据他们对故障管理的需求将许多链路故障k设置为容错等级。另外,为了满足每个k级别下的成本效益目标,探针数量和总探针长度必须是最佳的。然而,这两个因素彼此之间是负相关的,因此我们提出了一种启发式方法,称为自适应探针选择算法(PSA),可以满足这一权衡问题。最后,为了更好地反映城域边缘光纤网络的配置事实和建立要求,我们在网络上采用双向链接作为示例环境。这是因为常常忽略了光纤的单向传输特性。综上所述,仿真将演示并比较不同方法和网络之间的效率,性能评估表明,即使在大型和复杂的网络中,我们的方法也可以同样有效地发挥作用。

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