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Towards network invariant fault diagnosis in MANETs via statistical modeling: The global strength of local weak decisions

机译:通过统计建模走向MANET中的网络不变故障诊断:局部弱决策的整体优势

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Due to its obvious importance, fault detection and localization is a well-studied problem in communication networks, as attested by the many techniques designed to address this problem. The inherent variability, limited component reliability, and constrained resources of MANETs (Mobile Ad hoc Networks) make the problem not just more important, but also critical. Practical development and deployment considerations imply that fault detection and localization methods must i) avoid relying on overly detailed models of network protocols and traffic assumptions and instead rely on actual cross-layer measurements/observations, and ii) be applicable across different network scales and topologies with minimum adjustments. This paper demonstrates the feasibility of such goals, and proposes an important and as yet unexplored approach to fault management in MANETs: network-invariant fault detection, localization and diagnosis with limited knowledge of the underlying network and traffic models. We show how fault management methods can be derived by observing statistical network/traffic measurements in one network, and subsequently applied to other networks with satisfactory performance. We demonstrate that a carefully designed but widely applicable set of local and weak global indicators of faults can be efficiently aggregated to produce highly sensitive and specific methods that perform well when applied to MANETs with varying sizes, topologies, and traffic matrices.
机译:由于其明显的重要性,故障检测和定位在通信网络中是一个经过充分研究的问题,这一点已被许多旨在解决该问题的技术所证明。 MANET(移动自组织网络)的固有可变性,有限的组件可靠性和受约束的资源使该问题不仅变得更加重要,而且变得至关重要。实际的开发和部署注意事项意味着故障检测和定位方法必须i)避免依赖过于详细的网络协议和流量假设模型,而是依赖于实际的跨层测量/观察,并且ii)适用于不同的网络规模和拓扑调整最少。本文展示了实现这些目标的可行性,并提出了一种重要且尚未探索的方法来解决MANET中的故障管理:网络不变的故障检测,定位和诊断,但对底层网络和流量模型的了解有限。我们展示了如何通过观察一个网络中的统计网络/流量测量值来导出故障管理方法,然后将其应用于性能令人满意的其他网络。我们证明,经过精心设计但适用范围广泛的一组局部和较弱的全局故障指示器,可以有效地聚合,以生成高度灵敏和特定的方法,这些方法在应用于大小,拓扑和流量矩阵不同的MANET时表现良好。

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