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Modeling and Performance Considerations for Automated Fault Isolation in Complex Systems

机译:复杂系统中自动故障隔离的建模和性能考虑

摘要

The purpose of this paper is to document the modeling considerations and performance metrics that were examined in the development of a large-scale Fault Detection, Isolation and Recovery (FDIR) system. The FDIR system is envisioned to perform health management functions for both a launch vehicle and the ground systems that support the vehicle during checkout and launch countdown by using suite of complimentary software tools that alert operators to anomalies and failures in real-time. The FDIR team members developed a set of operational requirements for the models that would be used for fault isolation and worked closely with the vendor of the software tools selected for fault isolation to ensure that the software was able to meet the requirements. Once the requirements were established, example models of sufficient complexity were used to test the performance of the software. The results of the performance testing demonstrated the need for enhancements to the software in order to meet the demands of the full-scale ground and vehicle FDIR system. The paper highlights the importance of the development of operational requirements and preliminary performance testing as a strategy for identifying deficiencies in highly scalable systems and rectifying those deficiencies before they imperil the success of the project
机译:本文的目的是记录在大型故障检测,隔离和恢复(FDIR)系统的开发中检查过的建模注意事项和性能指标。通过使用一套免费的软件工具套件,FDIR系统可以在结账和发射倒数期间对运载火箭和支持运载火箭的地面系统执行健康管理功能,这些套件将向操作员实时发出异常和故障警报。 FDIR团队成员针对将用于故障隔离的模型制定了一套操作要求,并与选择用于故障隔离的软件工具的供应商紧密合作,以确保软件能够满足要求。一旦建立了需求,就使用具有足够复杂性的示例模型来测试软件的性能。性能测试的结果表明,需要对软件进行增强,以满足全面的地面和车辆FDIR系统的需求。本文强调了开发运营需求和进行初步性能测试的重要性,这是一种在高度可扩展的系统中识别缺陷并纠正这些缺陷,以防它们阻碍项目成功的战略。

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