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Developing a Fault Management Guidebook for NASA's Deep Space Robotic Missions

机译:为NASA的深空机器人任务开发故障管理指南

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NASA designs and builds systems that achieve incredibly ambitious goals, as evidenced by the Curiosity rover traversing on Mars, the highly complex International Space Station orbiting our Earth, and the compelling plans for capturing, retrieving and redirecting an asteroid into a lunar orbit to create a nearby a target to be investigated by astronauts. In order to accomplish these feats, the missions must be imbued with sufficient knowledge and capability not only to realize the goals, but also to identify and respond to off-nominal conditions. Fault Management (FM) is the discipline of establishing how a system will respond to preserve its ability to function even in the presence of faults. In 2012, NASA released a draft FM Handbook in an attempt to coalesce the field by establishing a unified terminology and a common process for designing FM mechanisms. However, FM approaches are very diverse across NASA, especially between the different mission types such as Earth orbiters, launch vehicles, deep space robotic vehicles and human spaceflight missions, and the authors were challenged to capture and represent all of these views. The authors recognized that a necessary precursor step is for each sub-community to codify its FM policies, practices and approaches in individual, focused guidebooks. Then, the sub-communities can look across NASA to better understand the different ways off-nominal conditions are addressed, and to seek commonality or at least an understanding of the multitude of FM approaches. This paper describes the development of the "Deep Space Robotic Fault Management Guidebook," which is intended to be the first of NASA's FM guidebooks. Its purpose is to be a field-guide for FM practitioners working on deep space robotic missions, as well as a planning tool for project managers. Publication of this Deep Space Robotic FM Guidebook is expected in early 2015. The guidebook will be posted on NASA's Engineering Network on the FM Community of Practice website so that it will be available to all NASA projects. Future plans for subsequent guidebooks for the other NASA sub-communities are proposed.
机译:NASA设计和建造的系统可以实现令人难以置信的雄心勃勃的目标,例如好奇号火星车穿越火星,高度复杂的国际空间站环绕我们的地球以及诱人的计划,即捕获,检索小行星并将其重定向到月球轨道以创建一个月球,这就是证明附近有一个要由宇航员调查的目标。为了完成这些壮举,必须使特派团具有足够的知识和能力,不仅要实现目标,而且要确定和应对不合标准的条件。故障管理(FM)是确定系统即使存在故障也将如何响应以保持其功能的准则。 2012年,NASA发布了FM手册草案,以通过建立统一的术语和设计FM机制的通用流程来巩固该领域。但是,FM的方法在NASA上非常不同,尤其是在不同的任务类型之间,例如地球轨道器,运载火箭,深空机器人飞行器和人类航天飞行,作者面临着捕获和代表所有这些观点的挑战。作者认识到,每个子社区都必须采取必要的先驱步骤,以便将其FM政策,实践和方法编入单独且重点突出的指南中。然后,这些子社区可以遍历NASA,以更好地了解解决非正常条件的不同方法,并寻求通用性或至少是对多种FM方法的理解。本文介绍了“深空机器人故障管理指南”的发展,该指南旨在成为NASA FM指南的第一本。其目的是为从事深空机器人任务的调频专业人员提供现场指南,以及为项目经理提供规划工具。该《深空机器人FM指南》预计将于2015年初出版。该指南将发布在FM实践社区网站上的NASA工程网络上,以便所有NASA项目都可以使用。提出了其他NASA子社区后续指南的未来计划。

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