Evaluating the Effects of Dimensionality in Advanced Avionic Display Concepts for Synthetic Vision Systems
NASA NTRS · Preprint (Draft being sent to journal) · 20090017795 · Published 2019-07-10 · Langley Research Center · 6 authors
Abstract and citation only, verbatim from NASA NTRS; full text lives there. All credit to the authors and Langley Research Center.
Abstract
Synthetic vision systems provide an in-cockpit view of terrain and other hazards via a computer-generated display representation. Two experiments examined several display concepts for synthetic vision and evaluated how such displays modulate pilot performance. Experiment 1 (24 general aviation pilots) compared three navigational display (ND) concepts: 2D coplanar, 3D, and split-screen. Experiment 2 (12 commercial airline pilots) evaluated baseline 'blue sky/brown ground' or synthetic vision-enabled primary flight displays (PFDs) and three ND concepts: 2D coplanar with and without synthetic vision and a dynamic multi-mode rotatable exocentric format. In general, the results pointed to an overall advantage for a split-screen format, whether it be stand-alone (Experiment 1) or available via rotatable viewpoints (Experiment 2). Furthermore, Experiment 2 revealed benefits associated with utilizing synthetic vision in both the PFD and ND representations and the value of combined ego- and exocentric presentations.
Authors
- Alexander, Amy L. Aptima, Inc.
- Prinzel, Lawrence J., III NASA Langley Research Center
- Wickens, Christopher D. Alion Science and Technology
- Kramer, Lynda J. NASA Langley Research Center
- Arthur, Jarvis J. NASA Langley Research Center
- Bailey, Randall E. NASA Langley Research Center
Citation
Alexander, Amy L., Prinzel, Lawrence J., III, Wickens, Christopher D. , et al. (2019). Evaluating the Effects of Dimensionality in Advanced Avionic Display Concepts for Synthetic Vision Systems. Langley Research Center. NASA NTRS ID 20090017795. https://ntrs.nasa.gov/citations/20090017795 ↗