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Extravehicular Activity Development and Verification Testing at NASA's Neutral Buoyancy Laboratory

机译:NASA中性浮力实验室的车外活动开发和验证测试

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As an initial step in the preparation for future Extravehicular Activities (EVAs), astronauts perform neutral buoyancy testing to develop and verify EVA hardware and operations. Neutral buoyancy evaluations at the National Aeronautics and Space Administration (NASA) Johnson Space Center (JSC) Sonny Carter Neutral Buoyancy Laboratory (NBL) to date, have primarily trained and evaluated assembly and maintenance tasks associated with elements of the International Space Station (ISS), space shuttle, and Hubble Space Telescope. With the retirement of the shuttle, completion of ISS assembly, and introduction of commercial operators for human transportation to space, evaluations at the NBL will take on a new focus. Crew training will be more skills based rather than training for a specific EVA. Development test objectives are selected for their criticality, lack of previous testing, or design changes that justify retesting. Assembly tasks and Orbital Replacement Unit (ORU) maintenance tasks investigated are performed using procedures developed by the flight hardware providers and the Mission Operations Directorate (MOD) EVA flight controllers. This paper describes the requirements and process for performing a neutral buoyancy test, including typical hardware and support equipment requirements, personnel and administrative resource requirements, examples of ISS systems and operations that are evaluated, and typical operational objectives that are evaluated. Implications for future EVA missions well beyond earth orbit are also explored.
机译:作为准备未来的舱外活动(EVA)的第一步,宇航员执行中性浮力测试,以开发和验证EVA的硬件和操作。迄今为止,美国国家航空航天局(NASA)约翰逊航天中心(JSC)桑尼·卡特中性浮力实验室(NBL)的中性浮力评估主要培训和评估了与国际空间站(ISS)相关的组装和维护任务,航天飞机和哈勃太空望远镜。随着航天飞机的退役,国际空间站的组装完成,以及引入将人类运送到太空的商业运营商,NBL的评估将成为新的重点。机组人员培训将更多地基于技能,而不是针对特定的EVA进行培训。选择开发测试目标的关键性,缺乏先前的测试或需要进行重新测试的设计更改。所调查的组装任务和轨道替换单元(ORU)维护任务是使用飞行硬件提供商和任务运营局(MOD)EVA飞行控制器开发的程序执行的。本文介绍了执行中性浮力测试的要求和过程,包括典型的硬件和支持设备要求,人员和管理资源要求,被评估的ISS系统和操作示例以及被评估的典型操作目标。还探讨了远在地球轨道之外的未来EVA任务的意义。

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