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Automation for Operations

机译:操作自动化

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The Automation for Operations (A4O) project, funded by NASA's ExplorationTechnology Development Program (ETDP), develops advanced mission operations technology for Constellation, NASA's plan to return to the Moon in response to the President's Vision for Space Exploration (VSE). In order to meet the challenges, A4O has developed an evolvable mission operations architecture to automate the operations of manned space vehicles, unoccupied space vehicles, surface assets, and robotic systems. The architecture consists of a small number of modular, interoperable and reconfigurable components, clear component definitions, and interfaces for information exchange. The architecture is designed for the flexibility needed to respond to changing mission needs and improved components. The architecture is designed to offer a variety of configurable automation services, from decision support for human operators and crew, to complete automation of un-crewed or remote systems. The architecture also offers integrated verification and validation (V&V) services to reduce operational costs of revising operations procedures.
机译:由美国宇航局的分析技术发展计划(ETDP)资助的运营自动化(A4O)项目开发了星座的先进的使命运营技术,美国宇航局计划回归月球的计划,以回应总统的太空勘探(VSE)的愿景。为了满足挑战,A4O开发了一种不断发展的使命运营架构,以自动化载人航天车辆,未占用的空间车辆,表面资产和机器人系统的运营。该架构包括少量模块化,可互操作和可重新配置的组件,清除组件定义和信息交换的接口。该架构专为响应改变任务需求和改进组件而需要的灵活性而设计。该架构旨在提供各种可配置的自动化服务,从人工运营商和机组人员决策支持,以完成未备忘录或远程系统的自动化。该体系结构还提供集成的验证和验证(V&V)服务,以降低修改操作程序的运营成本。

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