月球遥操作装配任务的人为因素评估方法

Arun Kumar, M. Bell, Benjamin J. Mellinkoff, Alex Sandoval, Wendy Bailey Martin, J. Burns
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引用次数: 2

摘要

低延迟远程机器人可以实现比以往任何时候都更复杂的地外行星表面任务。为了让人类在月球上建立可持续的存在,人类和机器人之间的良好合作是完成复杂任务的必要条件。本文提出了一种评估与遥控装配任务相关的人为因素、态势感知(SA)和认知负荷(CL)的方法。目前,从未尝试过在地外物体上进行远程机器人组装,也没有开发出评估相关人为因素的有效方法。科罗拉多大学博尔德分校的远程机器人实验室创建了远程机器人模拟系统(TSS),可以远程操作漫游车和机械臂。TSS被用于模拟月球任务的实验室实验中。操作员的任务是组装一个无线电干涉仪。每个参与者在远程操作(有限SA)和本地操作(最优SA)两种条件下完成该任务。本实验的目的是建立一种在执行遥控装配任务时准确测量操作员的SA和CL的方法。一个成功的方法将在局部操作时产生更高的SA和更低的CL的结果。在本实验中测量的性能指标显示,本地环境中的SA更高,CL更低,远程操作时完成组装任务的平均时间增加了27%。SA和CL的主观测量与性能指标不一致。这带来了质疑的有效性主观评估使用在这个实验中,当应用到遥控机器人组装任务。这个实验的结果将指导未来的工作,试图准确地量化与遥控机器人装配相关的人为因素。一旦开发出准确的方法,我们将能够测量新变量如何影响操作员的SA和CL,以优化远程机器人装配任务的效率和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Methodology to Assess the Human Factors Associated with Lunar Teleoperated Assembly Tasks
Low-latency telerobotics can enable more intricate surface tasks on extraterrestrial planetary bodies than has ever been previously attempted. In order for humanity to create a sustainable lunar presence, well-developed collaboration between humans and robots is necessary to perform complex tasks. This paper presents a methodology to assess the human factors, situational awareness (SA) and cognitive load (CL), associated with teleoperated assembly tasks. Currently, telerobotic assembly on an extraterrestrial body has never been attempted, and a valid methodology to assess the associated human factors has not been developed. The Telerobotics Laboratory at the University of Colorado-Boulder created the Telerobotic Simulation System (TSS) which enables remote operation of a rover and a robotic arm. The TSS was used in a laboratory experiment designed as an analog to a lunar mission. The operator's task was to assemble a radio interferometer. Each participant completed this task under two conditions, remote teleoperation (limited SA) and local operation (optimal SA). The goal of this experiment was to establish a methodology to accurately measure the operator's SA and CL while performing teleoperated assembly tasks. A successful methodology would yield results showing greater SA and lower CL while operating locally. Performance metrics measured in this experiment showed greater SA and lower CL in the local environment, supported by a 27% increase in the mean time to completion of the assembly task when operating remotely. Subjective measurements of SA and CL did not align with the performance metrics. This brought into question the validity of the subjective assessments used in this experiment when applied to telerobotic assembly tasks. Results from this experiment will guide future work attempting to accurately quantify the human factors associated with telerobotic assembly. Once an accurate methodology has been developed, we will be able to measure how new variables affect an operator's SA and CL in order to optimize the efficiency and effectiveness of telerobotic assembly tasks.
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