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Automation in Construction· 2026Q1

Human-dominated or human-robot joint teams? Impact of human-robot collaboration modes on safety performance

Zhijiang Wu, J. Wang, Yaru Zhu

Short summary

Human-robot joint teams (HRJT) improved safety performance in simple construction tasks by 10% compared to human-dominated teams (HDT), showing better temporal efficiency and spatial safety margins.

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Key points

  • Human-robot joint teams (HRJT) showed advantages in temporal efficiency and spatial safety margins over human-dominated teams (HDT) in simple construction tasks.
  • Under complex tasks with higher cognitive fatigue, HRJT's advantages in completion time and safety distance weakened or reversed compared to HDT.
  • Route deviation frequency did not show clear differences between HRJT and HDT modes.
  • Cognitive fatigue, task complexity, and HRC mode all influenced safety performance indicators.

AI-generated from the title and abstract; the full text is not read.

Abstract

The application of robots in construction has made human-robot collaboration (HRC) increasingly common, but how collaboration modes perform under cognitive fatigue and task complexity conditions remains insufficiently understood. This paper defined two HRC modes, human-dominated team (HDT) and human-robot joint team (HRJT), and developed a simulated material-handling experiment. Using a within-subjects design, 32 participants completed tasks under cognitive-fatigue and task-complexity conditions in both modes. Safety performance was evaluated using completion time, route deviation frequency, and safety distance. Results showed that cognitive fatigue, task complexity, and HRC mode were associated with safety-performance changes, with patterns across indicators. Under simple tasks, HRJT showed advantages in temporal efficiency and spatial safety margins, whereas these advantages weakened or reversed in completion-time and safety-distance comparisons under complex tasks with higher fatigue. Route deviation frequency showed less clear mode differences. These findings reveal condition-dependent safety-performance patterns across HRC modes and support adaptive HRC design in construction.

The authors' abstract, as published at the source. Automation in Construction, 2026 · DOI ↗

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