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A model-based reasoning architecture for system-level fault diagnosis.

机译:用于系统级故障诊断的基于模型的推理体系结构。

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摘要

This dissertation presents a model-based reasoning architecture with a two fold purpose: to detect and classify component faults from observable system behavior, and to generate fault propagation models so as to make a more accurate estimation of current operational risks. It incorporates a novel approach to system level diagnostics by addressing the need to reason about low-level inaccessible components from observable high-level system behavior. In the field of complex system maintenance it can be invaluable as an aid to human operators.; The first step is the compilation of the database of functional descriptions and associated fault-specific features for each of the system components. The system is then analyzed to extract structural information, which, in addition to the functional database, is used to create the structural and functional models. A fault-symptom matrix is constructed from the functional model and the features database. The fault threshold levels for these symptoms are founded on the nominal baseline data. Based on the fault-symptom matrix and these thresholds, a diagnostic decision tree is formulated in order to intelligently query about the system health. For each faulty candidate, a fault propagation tree is generated from the structural model. Finally, the overall system health status report includes both the faulty components and the associated "at risk" components, as predicted by the fault propagation model.
机译:本文提出了一种基于模型的推理体系结构,具有两个目的:从可观察的系统行为中检测和分类组件故障,并生成故障传播模型,以便对当前的操作风险进行更准确的估计。它通过解决从可观察的高层系统行为中推断出不可访问的低层次组件的需求,将新颖的方法集成到系统级诊断中。在复杂的系统维护领域,它对人类操作员的帮助是无价的。第一步是为每个系统组件编译功能说明和相关的故障特定功能的数据库。然后分析系统以提取结构信息,除功能数据库外,还用于创建结构和功能模型。从功能模型和特征数据库构建故障症状矩阵。这些症状的故障阈值水平基于标称基准数据。基于故障症状矩阵和这些阈值,可以制定诊断决策树,以智能地查询系统运行状况。对于每个故障候选者,从结构模型生成故障传播树。最后,整个系统运行状况报告包括故障传播模型所预测的故障组件和关联的“处于危险中”组件。

著录项

  • 作者

    Saha, Bhaskar.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 106 p.
  • 总页数 106
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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