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In-Vehicle Interaction Systems, Eye Movements, and Safety
Sanjram Premjit Khanganba1,2,3,4,5, Sajad Ahmad Najar6
1Human Factors & Applied Cognition Lab, 226957Indian Institute of Technology Indore, Indore, India.
Simultaneous in-vehicle distractions significantly increase driving errors and impact driver gaze more than sequential ones. This research highlights the dangers of complex in-car systems on driver attention and safety.
Area of Science:
- Human-Computer Interaction
- Cognitive Psychology
- Automotive Safety
Background:
- Modern vehicles feature increasingly complex in-vehicle interactive systems.
- These systems, while functional, pose significant risks as driver distractors.
- Understanding the impact of specific distraction types is crucial for automotive safety.
Purpose of the Study:
- To investigate the effects of in-vehicle spatial distractions on driving errors.
- To analyze driver gaze behavior under different spatial distraction conditions.
- To compare the impact of simultaneous versus sequential spatial distractions on driving performance.
Main Methods:
- Development of the "Direction Following in Distracted Driving - Spatial: Simultaneous and Sequential (D3-SSS)" experimental paradigm.
- Twenty-seven participants drove an instrumented vehicle on a test track, responding to directional cues.
- Drivers were exposed to either simultaneous or sequential in-vehicle spatial distractions presented via a dashboard monitor.
Main Results:
- Spatial-simultaneous distractions led to shorter eye fixation durations and fewer fixations on areas of interest compared to spatial-sequential distractions.
- Drivers committed more driving errors during spatial-simultaneous distraction conditions.
- A higher proportion of driving errors were classified as slips rather than lapses under distraction.
Conclusions:
- Spatial-simultaneous in-vehicle distractions are more detrimental to driving performance than spatial-sequential distractions.
- Driver attention and gaze behavior are significantly altered by simultaneous spatial distractions.
- Findings underscore the need for careful design of in-vehicle systems to minimize cognitive load and enhance driver safety.
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