Task Prioritization Under Varying Automation Reliability and Task Load in Multitasking Environments

Automation can improve efficiency in multitasking environments, but its benefits depend on system reliability and cognitive demands. This study examined the effects of automation reliability and task load on performance under task prioritization in a simulated multitasking environment. Twenty-six participants completed MATB-II tasks under four conditions varying in automation reliability (reliable vs. unreliable) and task load (low vs. high). Task performance and subjective workload were assessed across all conditions. Performance was highest under reliable, low-load conditions and declined with reduced automation reliability and increased task load across most tasks. Subjective workload increased under reduced automation reliability, whereas the effect of task load was not statistically significant. Notably, instructing participants to prioritize the tracking task did not result in preferential preservation of tracking task performance under reduced automation reliability and high task load conditions. These findings highlight the importance of reliable automation for supporting operator performance under high workload.

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Publication Details

Journal
Proceedings of the Human Factors and Ergonomics Society Annual Meeting
Published
2026-09-29
DOI
https://doi.org/10.1177/10711813261493595
Primary Topic
Human-Automation Interaction and Safety
Type
article
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article

Task Prioritization Under Varying Automation Reliability and Task Load in Multitasking Environments

L. H. Y., Oyedele Joseph Adewole, Vincent Nyamollo, Wil-Johneen White et al.
Proceedings of the Human Factors and Ergonomics Society Annual Meeting
Human-Automation Interaction and Safety
article

Task Prioritization Under Varying Automation Reliability and Task Load in Multitasking Environments

L. H. Y., Oyedele Joseph Adewole, Vincent Nyamollo, Wil-Johneen White, Chigbo Echezon
article en

Abstract

Automation can improve efficiency in multitasking environments, but its benefits depend on system reliability and cognitive demands. This study examined the effects of automation reliability and task load on performance under task prioritization in a simulated multitasking environment. Twenty-six participants completed MATB-II tasks under four conditions varying in automation reliability (reliable vs. unreliable) and task load (low vs. high). Task performance and subjective workload were assessed across all conditions. Performance was highest under reliable, low-load conditions and declined with reduced automation reliability and increased task load across most tasks. Subjective workload increased under reduced automation reliability, whereas the effect of task load was not statistically significant. Notably, instructing participants to prioritize the tracking task did not result in preferential preservation of tracking task performance under reduced automation reliability and high task load conditions. These findings highlight the importance of reliable automation for supporting operator performance under high workload.

Proceedings of the Human Factors and Ergonomics Society Annual Meeting
Lamar University (US)
Openalex Percentile: Top 7%
Human-Automation Interaction and Safety
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Task Prioritization Under Varying Automation Reliability and Task Load in Multitasking Environments — L. H. Y., Oyedele Joseph Adewole, et al. · Proceedings of the Human Factors and Ergonomics Society Annual Meeting (2026) | TGRS Research Map | TGRS