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NASA NTRS · Preprint (Draft being sent to journal)
Evaluating the Effects of Dimensionality in Advanced Avionic Display Concepts for Synthetic Vision Systems
Attribution
This is the abstract and citation. Full text lives at NASA NTRS — we link out rather than host. All credit to the authors and Langley Research Center.
Abstract
Verbatim from NASA NTRS. Not paraphrased, not summarized.
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 ↗