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Intelligent control of a planning system for astronaut training

机译:智能控制宇航员训练计划系统

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This work intends to design, analyze and solve, from the systems control perspective, a complex, dynamic, and multiconstrained planning system for generating training plans for crew members of the NASA-led International Space Station. Various intelligent planning systems have been developed within the framework of artificial intelligence. These planning systems generally lack a rigorous mathematical formalism to allow a reliable and flexible methodology for their design, modeling, and performance analysis in a dynamical, time-critical, and multiconstrained environment. Formulating the planning problem in the domain of discrete-event systems under a unified framework such that it can be modeled, designed, and analyzed as a control system will provide a self-contained theory for such planning systems. This will also provide a means to certify various planning systems for operations in the dynamical and complex environments in space. The work presented here completes the design, development, and analysis of an intricate, large-scale, and representative mathematical formulation for intelligent control of a real planning system for Space Station crew training. This planning system has been tested and used at NASA-Johnson Space Center
机译:这项工作旨在从系统控制的角度设计,分析和解决一个复杂,动态和多约束的计划系统,以为NASA领导的国际空间站的机组人员生成训练计划。在人工智能的框架内已经开发了各种智能计划系统。这些计划系统通常缺乏严格的数学形式主义,以允许在动态,时间紧迫和多约束的环境中进行可靠,灵活的方法设计,建模和性能分析。在统一框架下在离散事件系统领域中制定计划问题,以便可以将其建模,设计和分析为控制系统,这将为此类计划系统提供独立的理论。这也将提供一种手段来认证用于在动态和复杂的空间环境中运行的各种计划系统。此处介绍的工作完成了复杂,大规模和有代表性的数学公式的设计,开发和分析,以智能控制用于空间站机组人员训练的实际计划系统。该计划系统已在NASA-Johnson航天中心进行了测试和使用

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