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Real-Time Simulation for Verification and Validation of Diagnostic and Prognostic Algorithms

机译:实时仿真,用于诊断和预测算法的验证和确认

摘要

To verify that a health management system (HMS) performs as expected, a virtual system simulation capability, including interaction with the associated platform or vehicle, very likely will need to be developed. The rationale for developing this capability is discussed and includes the limited capability to seed faults into the actual target system due to the risk of potential damage to high value hardware. The capability envisioned would accurately reproduce the propagation of a fault or failure as observed by sensors located at strategic locations on and around the target system and would also accurately reproduce the control system and vehicle response. In this way, HMS operation can be exercised over a broad range of conditions to verify that it meets requirements for accurate, timely response to actual faults with adequate margin against false and missed detections. An overview is also presented of a real-time rocket propulsion health management system laboratory which is available for future rocket engine programs. The health management elements and approaches of this lab are directly applicable for future space systems. In this paper the various components are discussed and the general fault detection, diagnosis, isolation and the response (FDIR) concept is presented. Additionally, the complexities of V&V (Verification and Validation) for advanced algorithms and the simulation capabilities required to meet the changing state-of-the-art in HMS are discussed.
机译:为了验证健康管理系统(HMS)是否按预期执行,非常可能需要开发虚拟系统仿真功能,包括与相关平台或车辆的交互。讨论了开发此功能的原理,包括由于将高价值硬件潜在损坏的风险而无法将故障播种到实际目标系统中的功能。所设想的能力将准确地再现故障或故障的传播,如位于目标系统之上和周围的关键位置的传感器所观察到的那样,还将准确地再现控制系统和车辆的响应。通过这种方式,可以在广泛的条件下进行HMS操作,以验证其是否满足对准确故障做出及时,准确的响应的要求,并有足够的余量防止错误和遗漏的检测。还概述了实时火箭推进健康管理系统实验室,该实验室可用于将来的火箭发动机计划。该实验室的健康管理要素和方法可直接应用于未来的太空系统。本文讨论了各种组件,并提出了一般的故障检测,诊断,隔离和响应(FDIR)概念。此外,还讨论了高级算法的V&V(验证和验证)的复杂性以及满足HMS中最新技术水平所需的仿真功能。

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