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Modeling Workload Impact in Multiple Unmanned Vehicle Supervisory Control

机译:多个无人驾驶车辆监控中的工作负荷影响建模

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摘要

Discrete-event simulations for futuristic unmanned vehicle (UV) systems enable a cost- and time-effective methodology for evaluating various autonomy and human–automation design parameters. Operator mental workload is an important factor to consider in such models. We suggest that the effects of operator workload on system performance can be modeled in such a simulation environment through a quantitative relation between operator attention and utilization, i.e., operator busy time used as a surrogate real-time workload measure. To validate our model, a heterogeneous UV simulation experiment was conducted with 74 participants. Performance-based measures of attention switching delays were incorporated in the discrete-event simulation model by UV wait times due to operator attention inefficiencies (WTAIs). Experimental results showed that WTAI is significantly associated with operator utilization (UT) such that high UT levels correspond to higher wait times. The inclusion of this empirical UT–WTAI relation in the discrete-event simulation model of multiple UV supervisory control resulted in more accurate replications of data, as well as more accurate predictions for alternative UV team structures. These results have implications for the design of future human–UV systems, as well as more general multiple task supervisory control models.
机译:未来派无人飞行器(UV)系统的离散事件仿真提供了一种经济高效的方法,可用于评估各种自主权和人为自动化设计参数。操作员的精神工作量是在此类模型中要考虑的重要因素。我们建议可以在这样的模拟环境中通过操作员注意力和利用率之间的定量关系来建模操作员工作量对系统性能的影响,即将操作员繁忙时间用作替代实时工作量度量。为了验证我们的模型,有74位参与者进行了异构UV模拟实验。由于操作员注意效率低下(WTAI),通过UV等待时间将基于性能的注意切换延迟度量合并到离散事件模拟模型中。实验结果表明,WTAI与操作员利用率(UT)显着相关,因此较高的UT水平对应较高的等待时间。在多个UV监督控制的离散事件模拟模型中包含这种经验性UT-WTAI关系,可以更准确地复制数据,并为其他UV团队结构提供更准确的预测。这些结果对未来的人与紫外线系统的设计以及更通用的多任务监督控制模型都有影响。

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