首页> 外文会议>IEEE Aerospace Conference >Operational Lessons Learned for Systems Management and Automation on Manned Spacecraft
【24h】

Operational Lessons Learned for Systems Management and Automation on Manned Spacecraft

机译:在载人航天器上的系统管理和自动化中汲取了运营教训

获取原文

摘要

over the last four decades of human spaceflight, the capabilities and complexity of manned spacecraft systems have increased significantly to meet the evolving requirements of the mission. The management of the vehicle systems, both by the crew on-board and the operators in the Mission Control Center (MCC), has also evolved to take advantage of new capabilities, or simply to react to the features of the spacecraft design. As we embark in a new era of space exploration, with firm plans for the development of a new fleet of spacecraft intended to carry out the objectives of the Constellation program, it is relevant to examine important lessons learned on the design and management of manned spacecraft systems and the mission. This paper will focus on lessons learned related to system management capabilities that directly impact crew safety, mission success and/or improve operability of the spacecraft. In particular, the authors will examine current system design features, capabilities and processes that provide valuable capabilities or create operational challenges for the current manned spacecraft operated by NASA; the Space Transportation System (STS) (a.k.a. the Space Shuttle) and the International Space Station (ISS). Furthermore, it is important to analyze relevant events for which specific design capabilities have enabled safety or mission success, and others where system or process anomalies led to reduced system capabilities or operational challenges. A notable example of such events are the recent on-board Command and Control (C&C) computer anomalies in ISS, both on the US (during mission ISS 6A) and Russian segments (mission ISS 13A). For such events, it is important to understand the root-cause of the problem, to avoid it in future designs. However, it is more relevant to understand what aspects of the design led to the mitigation or further propagation of the impact of the failure, and the capabilities that enabled the team to recover from the anomalies. Moreover, relevant lessons learned are equally beneficial to standard practices or specific system capabilities that provide enabling tools for safer and more efficient operations. The purpose of this paper is to identify relevant operational lessons learned from current architectural designs and processes. For that purpose, the authors combine the discussion of "real-life" events, along with selected standard desired design features, to provide an illustration of capabilities that should be considered during the design and implementation of future spacecraft, including the Crew Exploration Vehicle (CEV) and other elements of the Constellation Program.
机译:在过去的四十年中,人类航天飞行器,载人航天器系统的能力和复杂性显着增加,以满足特派团的不断发展要求。由机组人员车载和操作员在任务控制中心(MCC)中的操作员的管理也发展起来,也可以利用新功能,或者只是对航天器设计的特征作出反应。随着我们踏上了一个新的太空探索时代,凭借公司开发的新舰队的制定旨在开展星座计划的目标,它与审查关于载人航天器的设计和管理的重要教训系统和使命。本文将专注于与系统管理能力有关的经验教训,即直接影响船员安全,使命成功和/或改善航天器的可操作性。特别是,作者将检查当前的系统设计特征,功能和流程,为NASA运营的当前载人的航天器创造了当前载人航天器的运营挑战;空间运输系统(STS)(A.K.A.航天飞机)和国际空间站(ISS)。此外,重要的是分析特定设计能力使安全或使命成功的相关事件以及系统或过程异常导致减少系统能力或运营挑战的其他事件。这些事件的一个值得注意的例子是美国(在任务ISS 6A)和俄罗斯段(使命ISS 13A期间)的ISS中最近的载机和控制(C&C)计算机异常。对于此类事件,重要的是要理解问题的根本原因,以避免在未来的设计中避免它。然而,了解设计的各个方面导致了减缓或进一步传播失败的影响,以及使团队能够从异常中恢复的能力,更为重要。此外,所吸取的相关教训同样有利于标准实践或特定的系统功能,提供更安全和更高效的操作的启用工具。本文的目的是识别从当前的架构设计和流程中汲取的相关操作教训。为此目的,作者结合了“现实生活”事件的讨论,以及所选择的标准期望的设计特征,提供了在设计和实施未来航天器的设计和实施过程中,包括船员勘探车( CEV)和星座计划的其他元素。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号