首页> 外文期刊>Frontiers in Psychology >Learning From the Past to Advance the Future: The Adaptation and Resilience of NASA’s Spaceflight Multiteam Systems Across Four Eras of Spaceflight
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Learning From the Past to Advance the Future: The Adaptation and Resilience of NASA’s Spaceflight Multiteam Systems Across Four Eras of Spaceflight

机译:从过去学习促进未来:美国宇航局的空间空间四种时代的空间空间多数系统的适应和恢复力

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Many important “grand” challenges—such as sending a team of humans on a voyage to Mars—present superordinate goals that require coordinated efforts across “multiteam systems” comprised of multiple uniquely specialized and interdependent component teams. Given their flexibility and resource capacity, multiteam system structures have great potential to perform adaptively in dynamic contexts. However, these systems may fail to achieve their superordinate goals if constituent members or teams do not adapt their collaboration processes to meet the needs of the changing environment. In this case study of the National Aeronautics and Space Administration (NASA)’s Spaceflight Multiteam Systems (SFMTSs), we aim to support the next era of human spaceflight by considering how the history of manned spaceflight might impact a SFMTS’s ability to respond adaptively to future challenges. We leverage archival documents, including Oral History interviews with NASA personnel, in order to uncover the key attributes and structural features of NASA’s SFMTSs as well as the major goals, critical events, and challenges they have faced over 60 years of operation. The documents reveal three distinct “eras” of spaceflight: (1) Early Exploration , (2) Experimentation , and (3) Habitation , each of which reflected distinct goals, critical events, and challenges. Moreover, we find that within each era, SFMTSs addressed new challenges adaptively by modifying their: (1) technical capabilities; (2) internal collaborative relationships; and/or (3) external partnerships. However, the systems were sometimes slow to implement needed adaptations, and changes were often spurred by initial performance failures. Implications for supporting future SFMTS performance and future directions for MTS theory and research are discussed.
机译:许多重要的“宏伟”挑战 - 例如向火星向火星派遣一个人类的人团队,这些目标需要在“多次系统”中,这些目标需要协调努力,这些目标跨越多个专业和相互依存的组件团队组成。鉴于它们的灵活性和资源能力,多次系统结构具有很大的潜力,可以在动态上下文中自适应地执行。然而,如果组成成员或团队不适应他们的协作流程以满足变化环境的需要,这些系统可能无法实现其上乘目标。在本案例研究美国国家航空航天局(NASA)的航天航天航天系统(SFMTS),我们的目标是通过考虑载人航天飞行史可能影响SFMTS自适应响应的能力,支持下一个人类航天飞行时代未来的挑战。我们利用档案文件,包括NASA人员的口头历史访谈,以揭示美国宇航局的SFMTS的关键属性和结构特征,以及他们面临60多年的经营面临的主要目标,关键事件和挑战。这些文件显示了三个不同的“时代”的航天飞行:(1)早期探索,(2)实验,(3)居住,每种居住地都反映了鲜明的目标,关键事件和挑战。此外,我们发现,在每个时代,SFMTS通过修改其:(1)技术能力来全心全意地解决了新的挑战; (2)内部协同关系;和/或(3)外部伙伴关系。然而,系统有时会慢实现所需的适应,并且通常因初始性能故障而被刺激。讨论了对支持未来SFMTS性能和未来方向的影响,对MTS理论和研究进行了支持。

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