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TECHNICAL CHALLENGES AND FUTURE TECHNOLOGY NEEDS FOR NASA'S GUIDANCE, NAVIGATION AND CONTROL ENGINEERING DISCIPLINE

机译:NASA指导,导航和控制工程纪律的技术挑战和未来的技术需求

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Currently the United States (U.S.) National Aeronautics and Space Adm inistration (NASA) is experiencing some significant changes, particularly in the human exploration arena. Notable among the changes that have recently occurred within NASA is the retirement of the space shuttle, the emergence of commercial crew transport to the International Space Station (ISS), the development of architectures for human exploration beyond low-Earth orbit (LEO), affordability constraints on robotic spaceflight missions, and a renewed emphasis on and commitment to space technology development/demonstration. These new changes within the Agency will have impacts on the Guidance, Navigation and Control (GN&C) discipline. This paper will summarize an independent NASA Engineering and Safety Center (NESC) assessment of the GN&C technical challenges and barriers currently faced by the three NASA Mission Directorates. Technical challenges and future technological need for NASA's GN&C engineering discipline will be summarized. In particular, three key GN&C challenge areas will be discussed in this paper. The first challenge concerns the fact that advanced GN&C capabilities (e.g., the application of robust/optimal or adaptive control) are not being exploited as much as they could be due to perceived risk of implementation. The second challenge addresses the need for meaningful investments in the next generation of GN&C component-level technologies. The third challenge arises from the lack of consistent NASA-wide top-level guidelines for GN&C system Design, Development, Test and Evaluation (DDT&E). Specific steps, many involving the efforts of the NESC GN&C Technical Discipline Team (TDT), to mitigate these three challenges will be identified and described. This paper will also discuss the need for sustained investments to sufficiently mature the several classes of GN&C technologies required to implement NASA crewed exploration missions beyond LEO, to address future aeronautical system needs, and to conduct robotic spaceflight missions for attaining Earth and Space scientific goals.
机译:目前美国(美国国家航空航空航天委员会(美国宇航局)正在经历一些重大变化,特别是人类勘探竞技场。在美国宇航局最近发生的变化中是值得注意的是航天飞机的退休,商业人员运输到国际空间站(ISS)的出现,以低地球轨道(LEO),负担能力的人力勘探架构的发展对机器人航天特派团的限制,并重新重新强调和对空间技术开发/示范的承诺。该机构内的这些新变化将对指导,导航和控制(GN&C)纪律影响。本文将总结三个NASA特派团目前面临的GN&C技术挑战和障碍的独立美国宇航局工程和安全中心(NESC)。将总结NASA的GN&C工程学科的技术挑战和未来技术需求。特别是,本文将讨论三个关键的GN&C挑战区域。第一个挑战率涉及高级GN&C能力(例如,强大/最佳或自适应或自适应控制的应用)并没有尽可能地被利用,因为他们可能是由于所阐述的实施风险。第二个挑战解决了在下一代GN&C组件级技术中有意义的投资的需求。第三次挑战是由于GN&C系统设计,开发,测试和评估(DDT&E)缺乏一致的NASA范围的顶级指南。具体步骤,许多涉及NESC GN&C技术学科团队(TDT)的努力,以减轻这三项挑战,并描述。本文还将讨论对持续成熟的持续投资需要持续投资,以便在Leo超越Leo超越Leo以外的勘探任务所需的几种GN&C技术,以解决未来的航空系统需求,并进行机器人航天特派团,以实现地球和空间科学目标。

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