疲劳对水下威胁探测中自动目标提示性能和元认知的解离效应。

IF 3.1 2区 心理学 Q1 PSYCHOLOGY, EXPERIMENTAL
Max Kailler Smith, Amelia R Kracinovich, Brandon J Schrom, Timothy L Dunn
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引用次数: 0

摘要

随着自动化越来越多地集成到复杂的军事任务中,它在支持疲劳状态下人类表现方面的作用值得仔细评估。集成自动目标提示(ATC)的一个特定军事用例是水下威胁检测(UTD)。这些类型的任务需要持续的警觉、准确的分类和可靠的元认知判断。疲劳,特别是由于清醒时间的增加,对保持高水平的表现提出了重大挑战。该研究调查了ATC是否能在低疲劳条件下提高UTD的性能,并在操作员疲劳时防止出现错误,这在车队作业中很常见。36名现役军人在大约24小时的清醒时间里,在有和没有不完善的ATC系统的情况下,完成了4次模拟UTD任务。结果表明,当参与者处于警觉状态时,ATC并没有提高他们的表现,尽管疲劳程度增加,但检测的准确性仍然保持不变。然而,疲劳导致元认知敏感性下降,反映在对假警报的更大信心和对ATC系统的信任度降低。这些发现表明,虽然自动化辅助可以潜在地保护疲劳下的基本任务表现,但它并不能防止高级认知过程的退化,如元认知准确性和对自动化的信任。这项研究强调了了解自动化如何与认知状态相互作用的重要性,特别是在疲劳状态下,以优化其在关键军事行动中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dissociable effects of fatigue on performance and metacognition from automatic target cuing in undersea threat detection.

As automation becomes increasingly integrated into complex military tasks, its role in supporting human performance under fatigue warrants careful evaluation. A specific military use case in which automatic target cuing (ATC) is integrated is undersea threat detection (UTD). These types of tasks demand sustained vigilance, accurate classification, and reliable metacognitive judgements. Fatigue, especially due to increased time awake, presents a significant challenge to sustaining high performance. This study investigated whether ATC enhances UTD performance under low fatigue conditions and protects against errors when operators are fatigued, as is common during fleet operations. Thirty-six active-duty service members completed four sessions of a simulated UTD task, with and without an imperfect ATC system, over a ~24-hour wakeful period. Results showed that ATC did not enhance performance when participants were alert, though detection accuracy maintained despite increased fatigue. However, fatigue led to decreased metacognitive sensitivity, reflected in greater confidence for false alarms and reduced trust in the ATC system. These findings suggest that while automation assistance can potentially protect basic task performance under fatigue, it does not prevent the degradation of higher-level cognitive processes, such as metacognitive accuracy and trust in the automation. This study highlights the importance of understanding how automation interacts with cognitive states, especially under fatigue, to optimize its role in critical military operations.

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来源期刊
CiteScore
6.80
自引率
7.30%
发文量
96
审稿时长
25 weeks
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