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Evaluating the Effects of Dimensionality in Advanced Avionic Display Concepts for Synthetic Vision Systems

机译:评估合成视觉系统高级航空显示概念中尺寸的影响

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摘要

Synthetic vision systems provide an in-cockpit view of terrain and other hazards via a computer-generated display representation. Two simulator-based experiments examined several display concepts for synthetic vision and evaluated how such displays modulate pilot performance. Experiment 1 (24 general aviation pilots) compared 3 navigational display (ND) concepts: 2D coplanar, 3D, and dual-perspective. Experiment 2 (12 commercial airline pilots) evaluated baseline "blue sky-brown ground" or synthetic-vision-enabled primary flight displays (PFDs) and 3 ND concepts: 2D coplanar with and without synthetic vision and a dynamic multimode rotatable exocentric format. In general, the results pointed to an overall advantage for a dual-perspective 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.
机译:综合视觉系统通过计算机生成的显示形式提供驾驶舱内地形和其他危险的视图。两个基于模拟器的实验检查了几种用于合成视觉的显示器概念,并评估了这些显示器如何调节飞行员的性能。实验1(24名通用航空飞行员)比较了3种导航显示(ND)概念:2D共面,3D和双重透视。实验2(12名商业航空公司的飞行员)评估了基线“蓝天棕色地面”或启用了合成视觉的主要飞行显示器(PFD)和3个ND概念:带有和不带有合成视觉的2D共面,以及动态多模可旋转外轴格式。总的来说,结果指出了双重透视格式的整体优势,无论是独立形式(实验1)还是可通过可旋转的视角使用(实验2)。此外,实验2揭示了在PFD和ND表示中使用合成视觉的好处以及自我中心和外中心结合的组合的价值。

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