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Verification of Functional Fault Models and the Use of Resource Efficient Verification Tools

机译:功能故障模型的验证和资源有效验证工具的使用

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Functional fault models (FFMs) are a directed graph representation of the failure effect propagation paths within a system's physical architecture and are used to support development and real-time diagnostics of complex systems. Verification of these models is required to confirm that the FFMs are correctly built and accurately represent the underlying physical system. However, a manual, comprehensive verification process applied to the FFMs was found to be error prone due to the intensive and customized process necessary to verify each individual component model and to require a burdensome level of resources. To address this problem, automated verification tools have been developed and utilized to mitigate these key pitfalls. This paper discusses the verification of the FFMs and presents the tools that were developed to make the verification process more efficient and effective.
机译:功能故障模型(FFM)是系统物理体系结构内故障影响传播路径的有向图表示,用于支持复杂系统的开发和实时诊断。需要对这些模型进行验证,以确认FFM是否正确构建并准确表示基础物理系统。但是,由于对每个单独的组件模型进行验证并需要繁重的资源,因此需要进行密集且自定义的过程,因此,应用于FFM的手动,全面的验证过程很容易出错。为了解决这个问题,已经开发并使用了自动验证工具来减轻这些关键缺陷。本文讨论了FFM的验证,并介绍了为使验证过程更加有效而开发的工具。

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