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The visually guided control of simulated altitude.
W W Johnson1, P S Tsang, C T Bennett
1NASA/Ames Research Center, Moffett Field, CA 94035.
Aviation, Space, and Environmental Medicine
|February 1, 1989
Summary
Pilots struggled to maintain altitude during simulated flights over meridian textures, especially at higher altitudes. This difficulty stemmed from confusing lateral wind gusts for vertical ones, impacting altitude control.
Area of Science:
- Human Factors and Aviation Psychology
- Visual Perception and Navigation
- Control Systems Engineering
Background:
- Understanding optical flow is crucial for pilots to regulate altitude during flight.
- Different ground textures may influence the extraction of visual cues for altitude control.
Purpose of the Study:
- To investigate how ground texture affects the ability to extract optical information for altitude regulation.
- To determine the impact of different visual textures (latitude, meridian, square) on flight control performance.
Main Methods:
- Simulated constant velocity forward flight over three distinct line-based ground textures.
- Participants used a rate control stick to maintain altitude amidst simulated vertical and lateral wind gusts.
- Adjusted root mean square errors (ARMSE) were used to quantify altitude regulation performance.
Main Results:
- Altitude regulation was significantly more difficult at higher altitudes.
- Flying over meridian textures (lines parallel to flight direction) impaired altitude control compared to latitude or square textures.
- Individual subject analysis revealed confusion between lateral and vertical wind disturbances as a key factor.
Conclusions:
- Meridian ground textures present a greater challenge for visual altitude regulation in simulated flight.
- Higher altitudes exacerbate difficulties in maintaining stable flight, particularly with challenging visual inputs.
- Misinterpretation of visual cues, such as confusing lateral for vertical disturbances, significantly degrades flight control.