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COMMON S~2ENCE MAINTENANCE

机译:普通S〜2ENCE维护

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Intermediate level avionics maintenance requires diagnostic assessment, repair, and flight certification steps. The current Automated Test Systems (ATS) are primarily designed to verity equipment end-to-end function (flight certification), so they are not optimized to support diagnostic procedures. An operator typically performs problem diagnosis at the beginning of the end-to-end test without any automated access to existing evidence of the likely failure. Test Program Set (TPS) routines can take hours for a functioning unit and much longer if repairs are necessary.rnThe Common S~2ENCE (Smart Support Enhancements for Net Centric Enabled) Maintenance System provides data exchange and diagnostic reasoning services to enable reduced test and diagnosis times. The system acquires operational flight and maintenance data from a variety of sources using open data standards and performs model-based diagnostic reasoning to identify likely failure modes and determine optimal test entry points. These enhancements greatly reduce test times by directing the test to the area of most likely failure. The system also provides diagnostic assistance based on bench testing results as the specific unit under test (UUT) is evaluated.rnThe system architecture and case studies of the systems as it has been applied to the F/A-18 I-Level avionics maintenance environment are described in this paper. Data acquisition, transfer, and analysis methods are also presented. A discussion of the application architecture details supportability considerations and extensibility to other operating environments.
机译:中级航空电子设备维护需要诊断评估,维修和飞行认证步骤。当前的自动测试系统(ATS)主要设计用于验证设备的端到端功能(飞行认证),因此并未对其进行优化以支持诊断程序。操作员通常在端到端测试开始时执行问题诊断,而不会自动访问可能出现故障的现有证据。测试程序集(TPS)例程对一个功能正常的单元可能要花费数小时,如果需要维修,则可能要花费更长的时间。rn通用S〜2ENCE(针对以网络为中心的智能支持增强)维护系统提供了数据交换和诊断推理服务,以减少测试和维护工作。诊断时间。该系统使用开放数据标准从各种来源获取运营飞行和维护数据,并执行基于模型的诊断推理,以识别可能的故障模式并确定最佳测试入口点。通过将测试定向到最有可能发生故障的区域,这些增强功能大大减少了测试时间。该系统还可以在评估特定被测设备(UUT)的基础上根据基准测试结果提供诊断帮助。rn系统架构和系统案例研究已应用于F / A-18 I级航空电子设备维护环境在本文中有描述。还介绍了数据获取,传输和分析方法。有关应用程序体系结构的讨论详细介绍了可支持性考虑因素以及对其他操作环境的可扩展性。

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