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NASA Stennis Space Center Integrated System Health Management Test Bed and Development Capabilities

机译:NASA Stennis航天中心集成系统健康管理测试台和开发能力

摘要

Integrated System Health Management (ISHM) is a capability that focuses on determining the condition (health) of every element in a complex System (detect anomalies, diagnose causes, prognosis of future anomalies), and provide data, information, and knowledge (DIaK)-not just data-to control systems for safe and effective operation. This capability is currently done by large teams of people, primarily from ground, but needs to be embedded on-board systems to a higher degree to enable NASA's new Exploration Mission (long term travel and stay in space), while increasing safety and decreasing life cycle costs of spacecraft (vehicles; platforms; bases or outposts; and ground test, launch, and processing operations). The topics related to this capability include: 1) ISHM Related News Articles; 2) ISHM Vision For Exploration; 3) Layers Representing How ISHM is Currently Performed; 4) ISHM Testbeds & Prototypes at NASA SSC; 5) ISHM Functional Capability Level (FCL); 6) ISHM Functional Capability Level (FCL) and Technology Readiness Level (TRL); 7) Core Elements: Capabilities Needed; 8) Core Elements; 9) Open Systems Architecture for Condition-Based Maintenance (OSA-CBM); 10) Core Elements: Architecture, taxonomy, and ontology (ATO) for DIaK management; 11) Core Elements: ATO for DIaK Management; 12) ISHM Architecture Physical Implementation; 13) Core Elements: Standards; 14) Systematic Implementation; 15) Sketch of Work Phasing; 16) Interrelationship Between Traditional Avionics Systems, Time Critical ISHM and Advanced ISHM; 17) Testbeds and On-Board ISHM; 18) Testbed Requirements: RETS AND ISS; 19) Sustainable Development and Validation Process; 20) Development of on-board ISHM; 21) Taxonomy/Ontology of Object Oriented Implementation; 22) ISHM Capability on the E1 Test Stand Hydraulic System; 23) Define Relationships to Embed Intelligence; 24) Intelligent Elements Physical and Virtual; 25) ISHM Testbeds and Prototypes at SSC Current Implementations; 26) Trailer-Mounted RETS; 27) Modeling and Simulation; 28) Summary ISHM Testbed Environments; 29) Data Mining - ARC; 30) Transitioning ISHM to Support NASA Missions; 31) Feature Detection Routines; 32) Sample Features Detected in SSC Test Stand Data; and 33) Health Assessment Database (DIaK Repository).
机译:集成系统健康管理(ISHM)是一项功能,致力于确定复杂系统中每个元素的状况(健康)(检测异常,诊断原因,未来异常的预后),并提供数据,信息和知识(DIaK) -不仅仅是数据控制系统,以确保安全有效地运行。该功能目前由大型团队(主要是地面人员)完成,但是需要更高程度地嵌入到车载系统中,以实现NASA的新探索任务(长期旅行并留在太空中),同时提高安全性并减少生命航天器的周期成本(车辆,平台,基地或前哨基地以及地面测试,发射和处理操作)。与该功能相关的主题包括:1)ISHM相关新闻文章; 2)ISHM探索愿景; 3)表示ISHM当前执行方式的图层; 4)NASA SSC的ISHM测试平台和原型; 5)ISHM功能能力等级(FCL); 6)ISHM功能能力等级(FCL)和技术就绪等级(TRL); 7)核心要素:需要的能力; 8)核心要素; 9)基于状态维护的开放系统架构(OSA-CBM); 10)核心元素:用于DIaK管理的体系结构,分类法和本体(ATO); 11)核心要素:用于DIaK管理的ATO; 12)ISHM体系结构物理实现; 13)核心要素:标准; 14)系统实施; 15)工作阶段草图; 16)传统航空电子系统,时间关键型ISHM和高级ISHM之间的相互关系; 17)试验台和车载ISHM; 18)试验台要求:RETS和ISS; 19)可持续发展与验证过程; 20)开发机载ISHM; 21)面向对象实现的分类法/本体; 22)E1试验台液压系统具有ISHM功能; 23)定义与嵌入智能的关系; 24)物理和虚拟智能元素; 25)SSC当前实施中的ISHM测试平台和原型; 26)拖车式RETS; 27)建模与仿真; 28)ISHM测试平台环境摘要; 29)数据挖掘-ARC; 30)过渡到ISHM以支持NASA任务; 31)特征检测例程; 32)在SSC测试台数据中检测到的样本特征; 33)健康评估数据库(DIaK存储库)。

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