Fusion Based Approach for Distributed Alarm Correlation in Computer Networks

A. Mohamed, O. Basir
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引用次数: 11

Abstract

We propose a new distributed alarm correlation and fault identification in computer networks. The managed network is divided into a disjoint management domains and each management domain is assigned a dedicated intelligent agent. The intelligent agent is responsible for collecting, analyzing, and correlating alarms emitted form emitted from its constituent entities in its domain. In the framework of Dempster-Shafer evidence theory, each agent perceives each alarm as a piece of evidence in the occurrence of a certain fault hypothesis and correlates the received alarms into a single alarm called local composite alarm, which encapsulates the agent’s partial view of the current status of the managed system. While the alarm correlation process is performed locally, each intelligent agent is able to correlate its alarms globally. These local composite alarms are, in turn, sent to a higher agent whose task is to fuse these alarms and form a global view of operation status of the running network. Extensive experimentations have demonstrated that the proposed approach is more alarm loss tolerant than the codebook based approaches and hence shown its effectiveness in a usually noisy network environment.
基于融合的计算机网络分布式报警关联方法
提出了一种新的分布式报警关联与故障识别方法。被管理网络被划分为多个互不关联的管理域,每个管理域分配一个专用的智能代理。智能代理负责收集、分析和关联其域内组成实体发出的警报。在Dempster-Shafer证据理论的框架中,每个agent将每个报警感知为某一故障假设发生的证据,并将接收到的报警关联成单个报警,称为局部复合报警,该报警封装了agent对被管理系统当前状态的局部视图。当警报关联过程在本地执行时,每个智能代理都能够全局关联其警报。这些本地复合告警再被发送给上级代理,上级代理的任务是融合这些告警,形成运行网络运行状态的全局视图。大量的实验表明,该方法比基于码本的方法更能容忍报警损失,因此在通常嘈杂的网络环境中显示出其有效性。
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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