Individual Learning Curves in Manual Control of Six Degrees of Freedom

B. Johannes, S. Bronnikov, Y. Bubeev, M. Arz, Sarah Piechowski, J. Rittweger
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引用次数: 3

Abstract

A newly developed tool to facilitate learning processes in complex perceptual-motor tasks was tested for its efficiency characteristics. The tool is based on a demanding manual control task, in which a target object has to be manipulated with six degrees of freedom. During the self-sufficient learning process the task difficulty is increased from very easy to the complex level of a manual spacecraft docking on a space station. The type and the difficulty of the next task were defined by a regulation system based on individual performance. The tool was successfully applied to 22 participants in a laboratory setting. No performance differences were found between genders. Age was correlated with training duration but slower learners also succeeded eventually. The tool provides improvements in the learning process for operational tasks like controlling a robot arm or to perform a docking maneuver. Beside the foreseen practical application in space this is a time effective and economic way to educate participants in ground based research requiring such complex skills.
六自由度手动控制中的个体学习曲线
一个新开发的工具,以促进学习过程在复杂的知觉运动任务的效率特征进行了测试。该工具是基于一个苛刻的手动控制任务,其中一个目标对象必须操纵六个自由度。在自给学习的过程中,任务难度从简单到复杂的手动航天器对接空间站。下一个任务的类型和难度由一个基于个人表现的规则系统来定义。该工具在实验室环境中成功应用于22名参与者。没有发现性别之间的表现差异。年龄与训练时间有关,但慢速学习者最终也会成功。该工具为操作任务的学习过程提供了改进,如控制机器人手臂或执行对接机动。除了可预见的空间实际应用外,这是教育需要如此复杂技能的地面研究参与者的一种既省时又经济的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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