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Systems architecture in failure analysis (Applications of architecture modeling to system failure analysis)

机译:故障分析中的系统架构(架构建模在系统故障分析中的应用)

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This paper describes research into the applicability and value of architecture modeling techniques in conducting failure analysis on a system that is currently in service. Many Systems of Systems (SoS) currently in service did not include architecture modeling in their design and integration phases. In the absence of architectural models, knowledge of critical items, interfaces, and interactions, is difficult to learn, communicate, and maintain. Failure analysis, particularly for SoS, requires comprehensive system knowledge to produce accurate and timely results. This paper contributes specifically by summarizing existing model-based failure analysis research in terms of applicability to in-service systems and by focusing on Fault Tree Analysis (FTA) and Failure Modes Effects Analysis (FMEA). Much of the existing research in this area is either specific to design or development phases of system lifecycle, or presupposes that architectural models exist, and does not approach the topic from the perspective of value and practicality to an in-service system. Firstly, a general analysis of the commonality of principles, methods, and resources used for failure analysis with those of system architecture modeling is presented. The second contribution is a review of system and SoS modeling techniques and current research as applied to these failure analysis methods. The paper concludes with a summary of model applicability to FTA and FMEA, and a brief analysis of the studied methods, which will guide future research and evaluation of architecture modeling-based methods for failure analysis.
机译:本文描述了在当前正在使用的系统上进行故障分析的体系结构建模技术的适用性和价值方面的研究。当前使用的许多系统系统(SoS)在其设计和集成阶段均未包括体系结构建模。在没有架构模型的情况下,关键项,接口和交互的知识很难学习,交流和维护。故障分析(尤其是针对SoS的分析)需要全面的系统知识才能产生准确,及时的结果。本文通过总结现有的基于模型的故障分析研究对服务系统的适用性,以及着重于故障树分析(FTA)和故障模式影响分析(FMEA)做出了特殊贡献。该领域中的许多现有研究要么特定于系统生命周期的设计或开发阶段,要么以架构模型为前提,并且没有从价值和实用性的角度来探讨该主题。首先,对用于故障分析的原理,方法和资源与系统体系结构建模的通用性进行了一般性分析。第二个贡献是对系统和SoS建模技术以及应用于这些故障分析方法的最新研究的回顾。本文最后总结了模型对FTA和FMEA的适用性,并简要分析了所研究的方法,这将为基于结构建模的失效分析方法的未来研究和评估提供指导。

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