智能运营监控任务自动化程度的分类

Aobo Wang, B. Guo, Shuqi Xue, Ting Jiang, Haifeng Bao
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摘要

随着自动化技术的应用,人类操作员依靠自动化功能或智能代理来完成复杂的认知任务,但这也导致了出环、首次故障等一系列人为因素风险问题。适当的自动化水平(LOA)设计有助于缓解上述人为因素风险,提高人机协作性能,但传统的LOA分类法难以直接指导操作监督任务的人机功能分配。为了描述当前LOA设计实践的特征,本文对相关领域的LOA监管任务分类进行了文献综述。本研究总结了LOA的分类维度。智能化的操作监控任务要求操作人员与自动化系统保持高度的交互与配合。因此,我们必须将LOA设计的重点转移到认知交互任务和接管任务上。本研究分析了文献中LOA分类不同维度的特点,总结了系统任务、认知交互任务和接管任务的LOA粒度。在此基础上,从人机交互的角度,提出了智能运营监督任务的LOA分类法。本研究为人机功能分配方案和系统LOA设计提供了重要的理论依据,对提高人机交互效率具有重要的理论和现实意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Taxonomy of Level of Automation in Intelligent Operational Supervisory Task
With the application of automation technology, Human operators rely on automation functions or intelligent agents to conduct complex cognitive tasks, but this also leads to a series of human factor risks such as out-of-the-loop and first failure problems. An appropriate level of automation (LOA) design will help to alleviate the above human factors risks and improve the performance of human-machine cooperation, but the traditional LOA taxonomy is difficult to directly guide the human-machine function allocation of operational supervisory tasks. To characterize current LOA design practices, a literature review was conducted to review the LOA taxonomy of supervision and control tasks in related fields. This research summarizes the taxonomy dimensions of LOA. The intelligent operational supervisory task requires the operators to maintain a high degree of interaction and cooperation with the automation system. Therefore, we must shift the focus of LOA design to cognitive interaction tasks and takeover tasks. This research analyzes the characteristics of different dimensions of LOA taxonomy in the literature, and summarizes the LOA granularity of system task, cognitive interaction task and takeover task. On this basis, from the perspective of human-machine interaction, the LOA taxonomy of intelligent operational supervisory tasks is proposed. This research provides an important theoretical basis for human-machine function allocation scheme and system LOA design, and has important theoretical and practical significance for improving the human-machine interaction efficiency.
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