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A Framework for Capturing and Analyzing the Failures due to System / Component Interactions

机译:捕获和分析由于系统/组件交互而导致的故障的框架

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摘要

To keep up with the speed of globalization and growing customer demands for more technology-oriented products, modern systems are becoming increasingly more complex. This complexity gives rise to unpredictable failure patterns. While there are a number of well-established failure analysis (physics-of-failure) models for individual components, these models do not hold good for complex systems as their failure behaviors may be totally different. Failure analysis of individual components does consider the environmental interactions but is unable to capture the system interaction effects on failure behavior. These models are based on the assumption of independent failure mechanisms. Dependency relationships and interactions of components in a complex system might give rise to some new types of failures that are not considered during the individual failure analysis of that component. This paper presents a general framework for failure modes and effects analysis (FMEA) to capture and analyze component interaction failures. The advantage of the proposed methodology is that it identifies and analyzes the system failure modes due to the interaction between the components. An example is presented to demonstrate the application of the proposed framework for a specific product architecture (PA) that captures interaction failures between different modules. However, the proposed framework is generic and can also be used in other types of PA.
机译:为了跟上全球化的速度和客户对更多面向技术产品的需求的增长,现代系统变得越来越复杂。这种复杂性导致无法预测的故障模式。尽管有许多针对单个组件的成熟的故障分析(故障物理)模型,但是这些模型对于复杂的系统并不合适,因为它们的故障行为可能完全不同。单个组件的故障分析确实考虑了环境相互作用,但是无法捕获系统交互对故障行为的影响。这些模型基于独立故障机制的假设。复杂系统中组件的依赖关系和交互可能会导致某些新类型的故障,而在对该组件的单独故障分析中不会考虑这些故障。本文为故障模式和影响分析(FMEA)提供了一个通用框架,以捕获和分析组件交互故障。所提出的方法的优点是它可以识别和分析由于组件之间的相互作用而导致的系统故障模式。给出一个示例来说明所提出的框架在特定产品体系结构(PA)中的应用,该体系结构捕获了不同模块之间的交互失败。但是,建议的框架是通用的,也可以用于其他类型的PA。

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