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Advanced automation approaches for space power systems

机译:太空动力系统的高级自动化方法

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The short-term objective of the work described is to develop ground and knowledge-based systems integrated with actual electric power system breadboards and testbeds to demonstrate the viability of advanced automation approaches for spacecraft onboard and ground-support applications. Initially, such systems would be used primarily in advisory capacities. As confidence is gained in their operation, these systems would evolve to allow closed-loop control. The long-term objective is to develop such intelligent knowledge-based systems for actual onboard autonomous operation of the spacecraft electric power system. The approach taken has been to start with well-defined, limited electric power system applications as stand-alone systems. The next step has been to integrate such applications with actual breadboards that are representative of flight systems. The next activity is concerned with focusing on integrating these knowledge-based systems with conventional automation software and hardware. Current efforts emphasize adding robustness to the interactions among the knowledge-based systems as well as adding intermediate levels of autonomy for the power system management.
机译:所描述工作的短期目标是开发与实际电力系统面包板和测试台集成的地面和基于知识的系统,以证明先进的自动化方法在航天器上和地面支持应用中的可行性。最初,此类系统将主要以顾问身份使用。随着人们对其操作的信心不断增强,这些系统将不断发展,从而实现闭环控制。长期目标是为航天器电力系统的实际机载自主运行开发此类基于知识的智能系统。采取的方法是从定义明确的,有限的电力系统应用程序作为独立系统开始。下一步是将此类应用程序与代表飞行系统的实际面包板集成在一起。下一个活动是关注将这些基于知识的系统与常规自动化软件和硬件集成在一起。当前的努力强调为基于知识的系统之间的交互增加鲁棒性,以及为电力系统管理增加中间级别的自治权。

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