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Optimal Sensor Selection for Health Monitoring Systems

机译:健康监测系统的最佳传感器选择

摘要

Sensor data are the basis for performance and health assessment of most complex systems. Careful selection and implementation of sensors is critical to enable high fidelity system health assessment. A model-based procedure that systematically selects an optimal sensor suite for overall health assessment of a designated host system is described. This procedure, termed the Systematic Sensor Selection Strategy (S4), was developed at NASA John H. Glenn Research Center in order to enhance design phase planning and preparations for in-space propulsion health management systems (HMS). Information and capabilities required to utilize the S4 approach in support of design phase development of robust health diagnostics are outlined. A merit metric that quantifies diagnostic performance and overall risk reduction potential of individual sensor suites is introduced. The conceptual foundation for this merit metric is presented and the algorithmic organization of the S4 optimization process is described. Representative results from S4 analyses of a boost stage rocket engine previously under development as part of NASA's Next Generation Launch Technology (NGLT) program are presented.
机译:传感器数据是大多数复杂系统性能和运行状况评估的基础。仔细选择和实施传感器对于实现高保真系统健康评估至关重要。描述了一种基于模型的过程,该过程系统地选择最佳传感器套件以用于指定主机系统的总体运行状况评估。该程序称为系统传感器选择策略(S4),是由NASA John H. Glenn研究中心开发的,目的是增强太空推进健康管理系统(HMS)的设计阶段计划和准备。概述了利用S4方法支持健壮健康诊断程序设计阶段开发所需的信息和功能。引入了一种量化指标,该指标量化了各个传感器套件的诊断性能和总体风险降低潜力。提出了此绩效指标的概念基础,并描述了S4优化过程的算法组织。介绍了先前作为NASA下一代发射技术(NGLT)计划的一部分正在开发的增压级火箭发动机的S4分析的代表性结果。

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