English

Perceived Safety of Workers in Encounters with Large Industrial AGVs

Human-Computer Interaction 2026-05-22 v1

Abstract

Automated Guided Vehicles (AGV) in factory automation are increasingly capable of moving autonomously in close proximity to human workers. While their physical safety is regulated by standards and directives, perceived safety and workers comfort in close-proximity interactions are being actively investigated in studies. There are three limitations in the prior art research to that end. Firstly, AGVs with larger payloads are understudied. Secondly, the test participants are usually students and not working professionals. Thirdly, while conducting in-person experiments with heavy machinery can be dangerous, the transfer of safety perception results from simulated experiments remains open. In this paper, we investigate industrial workers perceived safety in shared spaces with large AGVs in a real-world encounter and in virtual reality. We vary the passing distance and the shape of the collision avoidance maneuver, and evaluate perceived threat level using a handheld pressure-sensitive trigger interface and a post-experiment questionnaire. Additionally, we ask participants to set their own collision avoidance parameters based on their experience with the demonstrated trajectory profiles. In a within-subject study, we found that, while the threat levels are perceived overall slightly higher in VR, the passing distance of 1.5 to 2 meters is preferred among the demonstrated profiles, as well as in the self-defined trajectories.

Keywords

Cite

@article{arxiv.2605.22461,
  title  = {Perceived Safety of Workers in Encounters with Large Industrial AGVs},
  author = {Ansgar Howey and Tim Schreiter and Andrey Rudenko and Achim J. Lilienthal},
  journal= {arXiv preprint arXiv:2605.22461},
  year   = {2026}
}

Comments

IEEE ICRA 2026 Workshop Proceedings: 8th Long-term Human Motion Prediction Workshop (LHMP 2026)