诊断学因果图模型的构建

Guo Li, Jianmin Gao, Fumin Chen
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引用次数: 6

摘要

因果图是不确定性知识表达和推理最有效的理论模型之一。为了实现诊断因果图的计算机辅助构建,本文提出了一种简单而全面的表示模型,使故障知识更系统完整地组织起来。该方法将失效模式定义为不同层次物理实体的固有属性,并利用多色集合理论来表示失效模式之间的相互关系以及它们与物理系统的关系。然后,通过对多色集合的推理矩阵进行迭代搜索,以演绎的方式构建诊断因果图的基础结构。最后通过实例分析说明了该方法的可行性。研究表明,用多色集方法构建DCD具有一定的数学基础,易于在计算机上实现。
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Construction of causality diagram model for diagnostics
Causality diagram is one of the most effective theoretical models for uncertainty knowledge expression and reasoning. In order to realize the computer-aided construction of the causality diagram for diagnostics, this paper proposes a simple, yet comprehensive representation model to organize the failure knowledge more systematically and completely. This method defines the failure modes as the inherent properties of the physical entities at different hierarchical levels, and employs the polychromatic sets theory to represent the failure modes in terms of their interrelationships and their relations to the physical system. Then, the infrastructure of the diagnostic causality diagram (DCD) is constructed in a deductive manner by using the iterative search process operated on the reasoning matrices of the polychromatic sets. A case study is used to illustrate the feasibility of the proposed method. The research shows that the polychromatic sets approach to the DCD construction has formed mathematical foundation and can be readily implemented in computer.
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