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Why Mission Control Works: Supporting Cognition and Collaboration in Distributed, Dynamic Worlds

机译:特派团控制作品为何:在分布式,动态世界中支持认知和协作

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Studies of failures have dominated human factors research in complex, dynamic domains. The goal of this panel, however, is to use a case study of success - space shuttle mission control - to explore how robust problem-solving and effectivecollaboration among distributed, functionally distinct agents can be facilitated. This panel brings together human factors researchers and systems designers who are familiar with mission control to discuss the cognitive factors, organizational practices,and technological innovations that contribute to the success of space shuttle missions. As with other complex domains, economic and technological pressures are threatening mission control's bases for success. These pressures (e.g., budget/staffreductions, more complex technology, and longer, more remote missions) are intensifying demands for "smarter", more autonomous computer support tools. Therefore, this panel explores approaches for designing intelligent systems and automation that performas "team players" in challenging operational environments - where effective collaboration constitutes the key to success.
机译:失败的研究在复杂的动态域中主导了人类因素研究。然而,本面板的目标是利用成功 - 航天飞机特派团控制的案例研究 - 探讨分布式,功能明显的药剂之间的鲁棒解决和有效性如何促进。本面板汇集了熟悉特派团控制的人类因素研究人员和系统设计师,以讨论有助于航天飞机任务成功的认知因素,组织实践和技术创新。与其他复杂领域一样,经济和技术压力正在威胁到使命控制的成功基础。这些压力(例如,预算/员工,更复杂的技术,更长,更远程任务)正在加强对“更智能”,更自主的计算机支持工具的需求。因此,本面板探讨了设计智能系统和自动化的方法,即在挑战的运营环境中执行“团队播放器” - 有效合作构成成功的关键。

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