生命周期支持集成诊断虚拟测试台

K. Cavanaugh
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引用次数: 5

摘要

Qualtech Systems, Inc. (QSI)开发了一种架构,该架构利用现有的TEAMS(可测试性工程和维护系统)集成工具集作为建模和严格设计分析的计算环境的基础。这种架构被称为集成诊断的虚拟测试台(VTB)。VTB方法解决了可测试性、安全性和降低风险的设计,因为它提供了一个工程环境来开发/提供:准确,全面,基于图形模型的故障模式,影响和诊断分析,以了解故障模式,它们的传播,影响和诊断能力,以解决这些故障模式。2. 优化诊断方法和测试测序,支持开发有效的诊断方法组合。3.从分析到运行时实现,再到维护过程和生命周期支持的无缝集成。未检测到的故障列表、模糊组列表和优化的诊断树。4. 一个协作的,广泛分布的工程环境,在它被建造和飞行之前“完成”设计。VTB架构为系统/组件建模、安全设计、故障模式/影响分析、可测试性工程以及IVHM(集成车辆健康管理)功能与车辆其余部分的严格集成/测试提供了一个创新的COTS解决方案。本文描述的VTB方法将使用TEAMS软件工具生成详细、准确的设计“故障”模型,评估故障模式影响的传播,并确定对安全、任务和支持成本的影响。它将生成FMECA,任务可靠性评估,结合诊断和预测测试设计,并执行可测试性分析。VTB的诊断功能包括故障检测与隔离指标、未检出故障列表、模糊组列表、优化诊断树等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An integrated diagnostics virtual test bench for life cycle support
Qualtech Systems, Inc. (QSI) has developed an architecture that utilizes the existing TEAMS (Testability Engineering and Maintenance Systems) integrated tool set as the foundation to a computing environment for modeling and rigorous design analysis. This architecture is called a Virtual Test Bench (VTB) for Integrated Diagnostics. The VTB approach addresses design for testability, safety, and risk reduction because it provides an engineering environment to develop/provide: 1. Accurate, comprehensive, and graphical model based failure mode, effects and diagnostic analysis to understand failure modes, their propagation, effects, and ability of diagnostics to address these failure modes. 2. Optimization of diagnostic methods and test sequencing supporting the development of an effective mix of diagnostic methods. 3. Seamless integration from analysis, to run-time implementation, to maintenance process and life cycle support. undetected fault lists, ambiguity group lists, and optimized diagnostic trees. 4. A collaborative, widely distributed engineering environment to "ring-out" the design before it is built and flown. The VTB architecture offers an innovative solution in a COTS package for system/component modeling, design for safety, failure mode/effect analysis, testability engineering, and rigorous integration/testing of the IVHM (Integrated Vehicle Health Management) function with the rest of the vehicle. The VTB approach described in this paper will use the TEAMS software tool to generate detailed, accurate "failure" models of the design, assess the propagation of the failure mode effects, and determine the impact on safety, mission and support costs. It will generate FMECA, mission reliability assessments, incorporate the diagnostic and prognostic test designs, and perform testability analysis. Diagnostic functions of the VTB include fault detection and isolation metrics undetected fault lists, ambiguity group lists, and optimized diagnostic trees.
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