Effects of False Tilt Cues on the Training of Manual Roll Control Skills
Author(s) -
Peter Zaal,
Alexandru Popovici,
Melinda A. Zavala
Publication year - 2015
Publication title -
aiaa modeling and simulation technologies conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2015-0655
Subject(s) - tilt (camera) , training (meteorology) , computer science , control (management) , artificial intelligence , computer vision , engineering , mechanical engineering , physics , meteorology
This paper describes a transfer-of-training study performed in the NASA Ames Vertica lMotion Simulator. The purpose of the study was to investigate the effect of false tilt cues on training and transfer of training of manual roll control skills. Of specific interest were the skills needed to control unstable roll dynamics of a mid-size transport aircraft close to the stall point. Nineteen general aviation pilots trained on a roll control task with one of three motion conditions: no motion, roll motion only, or reduced coordinated roll motion. All pilots transferred to full coordinated roll motion in the transfer session. A novel multimodal pilot model identification technique was successfully applied to characterize how pilots' use of visual and motion cues changed over the course of training and after transfer. Pilots who trained with uncoordinated roll motion had significantly higher performance during training and after transfer, even though they experienced the false tilt cues. Furthermore, pilot control behavior significantly changed during the two sessions, as indicated by increasing visual and motion gains, and decreasing lead time constants. Pilots training without motion showed higher learning rates after transfer to the full coordinated roll motion case.
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