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A Generic Modeling Process to Support Functional Fault Model Development

机译:支持功能故障模型开发的通用建模过程

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Functional fault models (FFMs) are qualitative representations of a system's failure space that are used to provide a diagnostic of the modeled system. An FFM simulates the failure effect propagation paths within a system between failure modes and observation points. These models contain a significant amount of information about the system including the design, operation and off nominal behavior. The development and verification of the models can be costly in both time and resources. In addition, models depicting similar components can be distinct, both in appearance and function, when created individually, because there are numerous ways of representing the failure space within each component Generic application of FFMs has the advantages of software code reuse: reduction of time and resources in both development and verification, and a standard set of component models from which future system models can be generated with common appearance and diagnostic performance. This paper outlines the motivation to develop a generic modeling process for FFMs at the component level and the effort to implement that process through modeling conventions and a software tool. The implementation of this generic modeling process within a fault isolation demonstration for NASA's Advanced Ground System Maintenance (AGSM) Integrated Health Management (IHM) project is presented and the impact discussed.
机译:功能故障模型(FFM)是系统故障空间的定性表示,用于提供对建模系统的诊断。 FFM模拟系统中故障模式和观察点之间的故障影响传播路径。这些模型包含有关系统的大量信息,包括设计,操作和异常行为。模型的开发和验证可能会花费大量时间和资源。另外,描述相似组件的模型在单独创建时,在外观和功能上都可能是不同的,因为在每个组件中存在多种表示故障空间的方法。FFM的通用应用程序具有软件代码重用的优势:减少了时间和时间。开发和验证方面的资源,以及一组标准的组件模型,从中可以生成具有通用外观和诊断性能的将来的系统模型。本文概述了在组件级别开发用于FFM的通用建模过程的动机,以及通过建模约定和软件工具来实现该过程的工作。本文介绍了此通用建模过程在NASA的高级地面系统维护(AGSM)综合健康管理(IHM)项目的故障隔离演示中的实现方式,并讨论了其影响。

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