Evaluation of the Mines Lunar Surface Simulator as a Viable Testing Ground for Human Factors Assessments of Rover Teleoperations

As extraterrestrial rovers transition from scientific exploration to multi-agent infrastructure development and in-situ resource utilization (ISRU), human operators are shifting from direct teleoperation to supervisory roles. While high-fidelity analog testbeds exist to capture equipment data, they are underutilized for evaluating constraints on human-robot interaction. This paper outlines a baseline evaluation of the Mines Lunar Surface Simulator (MLSS) at the Colorado School of Mines as a potential testing ground for Human Factors (HF) rover teleoperations studies. Using a high-fidelity lunar highland terrain simulant, dynamic lighting, overhead LiDAR, and tracking cameras, the MLSS replicates critical lunar stressors, such as visibility limitations and traction loss. This demonstrates how facilities like the MLSS can bridge the gap between low-fidelity simulations and large-scale operational testing, enabling the optimization of future adaptive autonomy and human-rover surface operations.

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Publication Details

Journal
Proceedings of the Human Factors and Ergonomics Society Annual Meeting
Published
2026-09-17
DOI
https://doi.org/10.1177/10711813261487969
Primary Topic
Space Exploration and Technology
Type
article
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article

Evaluation of the Mines Lunar Surface Simulator as a Viable Testing Ground for Human Factors Assessments of Rover Teleoperations

Fernando Montalvo, Antar Mazumder, Ryan Hartzell, Frankie Zhu et al.
Proceedings of the Human Factors and Ergonomics Society Annual Meeting
Space Exploration and Technology
article

Evaluation of the Mines Lunar Surface Simulator as a Viable Testing Ground for Human Factors Assessments of Rover Teleoperations

Fernando Montalvo, Antar Mazumder, Ryan Hartzell, Frankie Zhu, Abigail S. Glover
article en

Abstract

As extraterrestrial rovers transition from scientific exploration to multi-agent infrastructure development and in-situ resource utilization (ISRU), human operators are shifting from direct teleoperation to supervisory roles. While high-fidelity analog testbeds exist to capture equipment data, they are underutilized for evaluating constraints on human-robot interaction. This paper outlines a baseline evaluation of the Mines Lunar Surface Simulator (MLSS) at the Colorado School of Mines as a potential testing ground for Human Factors (HF) rover teleoperations studies. Using a high-fidelity lunar highland terrain simulant, dynamic lighting, overhead LiDAR, and tracking cameras, the MLSS replicates critical lunar stressors, such as visibility limitations and traction loss. This demonstrates how facilities like the MLSS can bridge the gap between low-fidelity simulations and large-scale operational testing, enabling the optimization of future adaptive autonomy and human-rover surface operations.

Proceedings of the Human Factors and Ergonomics Society Annual Meeting
Colorado School of Mines (US), Netherlands Institute for Radio Astronomy (NL)
Industry, innovation and infrastructure
Openalex Percentile: Top 7%
Space Exploration and Technology
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Evaluation of the Mines Lunar Surface Simulator as a Viable Testing Ground for Human Factors Assessments of Rover Teleoperations — Fernando Montalvo, Antar Mazumder, et al. · Proceedings of the Human Factors and Ergonomics Society Annual Meeting (2026) | TGRS Research Map | TGRS