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Distributed Health Monitoring System for Reusable Liquid Rocket Engines

机译:可重复使用液体火箭发动机的分布式健康监测系统

摘要

The ability to correctly detect and identify any possible failure in the systems, subsystems, or sensors within a reusable liquid rocket engine is a major goal at NASA John C. Stennis Space Center (SSC). A health management (HM) system is required to provide an on-ground operation crew with an integrated awareness of the condition of every element of interest by determining anomalies, examining their causes, and making predictive statements. However, the complexity associated with relevant systems, and the large amount of data typically necessary for proper interpretation and analysis, presents difficulties in implementing complete failure detection, identification, and prognostics (FDI&P). As such, this paper presents a Distributed Health Monitoring System for Reusable Liquid Rocket Engines as a solution to these problems through the use of highly intelligent algorithms for real-time FDI&P, and efficient and embedded processing at multiple levels. The end result is the ability to successfully incorporate a comprehensive HM platform despite the complexity of the systems under consideration.
机译:正确检测和识别可重复使用的液体火箭发动机内的系统,子系统或传感器中任何可能的故障的能力,是NASA约翰·斯坦尼斯太空中心(SSC)的主要目标。需要一个健康管理(HM)系统,通过确定异常,检查其原因并做出预测性陈述,为地面操作人员提供对每个关注要素的状况的综合了解。但是,与相关系统相关的复杂性以及正确解释和分析通常所需的大量数据,给实现完整的故障检测,识别和预测(FDI&P)带来了困难。因此,本文提出了一种用于可重复使用的液体火箭发动机的分布式健康监控系统,通过使用高度智能的实时FDI&P算法以及在多个级别进行高效的嵌入式处理来解决这些问题。最终结果是尽管考虑了系统的复杂性,但仍能够成功整合一个全面的HM平台。

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