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Operator Learning Effects in Teleoperated Rendezvous Docking

机译:操作员学习术语中的营养效果和对接

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Teleoperation of spacecraft proximity operations and docking requires delicate timing and coordination of spacecraft maneuvers. Experience has shown that human operators show large performance fluctuations in these areas, which are a major factor to be addressed in operator training. In order to allow the quantification of the impact of these human fluctuations on control system performance and the human perception of this performance, a learning curve study was conducted with teleoperated final approach and docking scenarios. Over a period of ten experiment days, three test participants were tasked with repeatedly completing a set of three training scenarios. The scenarios were designed to contain different combinations of the major elements of any final approach and docking situation, and to feature an increasing difficulty level. The individual difficulty levels for the three operators furthermore differed in the level of operator support functions available in their human-machine interfaces. Operator performance in the test scenarios were evaluated in the fields approach success and precision, docking safety, and approach efficiency by a combination of recorded maneuver data and questionnaires. The results show that operator experience and the associated learning curves increase operator performance substantially, regardless of the support system used. The paper also shows that the fluctuations in operator performance and self-perception are substantial between as well as within experiment days, and must be reckoned with in teleoperation system design and mission planning.
机译:航天器接近操作和对接的遥气操作需要微妙的时间和协调航天器机动。经验表明,人类运营商在这些领域展示了大的性能波动,这是在运营商培训中解决的主要因素。为了允许量化这些人类波动对控制系统性能的影响和对这种性能的人类感知来说,通过远程期末的最终方法和对接情景进行学习曲线研究。在十个实验日内,三个测试参与者被任务任务,反复完成一套三种培训场景。该方案旨在包含任何最终方法和对接情况的主要元素的不同组合,并具有增加的难度级别。三个运营商的个体难度级别在人机接口中提供的操作员支持功能的级别不同。在测试场景中的操作员性能在现场方法中评估了成功和精度,对接安全,并通过录制的机动数据和问卷组合方法。结果表明,无论使用的支持系统如何,操作员经验和相关的学习曲线都会增加操作员性能。本文还表明,操作员性能和自我感知的波动在实验日内在外部操作系统设计和任务规划中必须估算。

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