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Characterizing Human Visual Performance in Dim Industrial Environments: An Eye-Tracking Sensor-Based Study on Mine

Junqing Hao1, Rui Chen1, Wei Zong1

  • 1School of Architecture and Design, China University of Mining and Technology, Xuzhou 221116, China.

Sensors (Basel, Switzerland)
|July 15, 2026
PubMed
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RETRACTED: Ndaguba et al. Operability of Smart Spaces in Urban Environments: A Systematic Review on Enhancing Functionality and User Experience. <i>Sensors</i> 2023, <i>23</i>, 6938.

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Optimizing interface design in underground mines improves visual search efficiency. The Three-Column Layout (THCL) and 50-lux lighting conditions enhance user performance in electronic monitoring systems.

Area of Science:

  • Human-Computer Interaction
  • Mining Engineering
  • Ergonomics

Background:

  • Intelligent electronic monitoring systems are crucial for underground mining operations.
  • Low-light conditions in mines significantly impact visual search tasks on screens.
  • Optimizing interface design is essential for improving user performance in these environments.

Purpose of the Study:

  • To investigate the impact of interface layout and ambient illuminance on visual search efficiency in simulated underground mining electronic monitoring systems.
  • To evaluate user performance using eye-tracking technology.
  • To determine the optimal interface layout and lighting conditions for enhanced usability.

Main Methods:

  • Utilized eye-tracking sensing technology to evaluate user performance.
Keywords:
eye trackinginterface layoutunderground monitoring interfaceusabilityvisual search

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  • Set interface layout and ambient illuminance as experimental variables.
  • Measured task completion time, eye-movement metrics (fixation count, saccade count), and usability satisfaction.
  • Main Results:

    • Both interface layout and ambient illuminance significantly affected task completion time, eye-movement metrics, and usability.
    • The Three-Column Layout (THCL) demonstrated superior performance in task completion time, fixation count, and usability.
    • Visual search efficiency was generally higher under a 50-lux illuminance condition.

    Conclusions:

    • Interface layout and ambient illuminance are critical factors for visual search efficiency in underground mining electronic monitoring systems.
    • The THCL is recommended for interface design in low-light mining environments.
    • A lighting level of approximately 50 lux can improve visual search performance.