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Examining the Effects of Conformal Terrain Features in Advanced Head‐Up Displays on Flight Performance and Pilot Situation Awareness

机译:检查高级平视显示器中共形地形特征对飞行性能和飞行员状态意识的影响

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摘要

Synthetic vision systems (SVS) render terrain features for pilots through cockpit displays using a GPS database and three‐dimensional graphical models. Enhanced vision systems (EVS) present infrared imagery of terrain using a forward‐looking sensor in the nose of an aircraft. The ultimate goal of SVS and EVS technologies is to support pilots in achieving safety under low‐visibility and night conditions comparable to clear, day conditions. This study assessed pilot performance and situation awareness (SA) effects of SVS and EVS imagery in an advanced head‐up display (HUD) during a simulated landing approach under instrument meteorological conditions. Videos of the landing with various HUD configurations were presented to eight pilots with a superimposed tracking task. The independent variables included four HUD feature configurations (baseline [no terrain imagery], SVS, EVS, and a combination of SVS and EVS), two visibility conditions, and four legs of the flight. Results indicated that SVS increased overall SA but degraded flight path control performance because of visual confusion with other display features. EVS increased flight path control accuracy but decreased system (aircraft) awareness because of visual distractions. The combination of SVS and EVS generated offsetting effects. Display configurations did not affect pilot spatial awareness. Flight performance was not different among phases of the approach, but levels and types of pilot SA did vary from leg to leg. These results are applicable to development of adaptive HUD features to support pilot performance. They support the use of multidimensional measures of SA for insight on pilot information processing with advanced aviation displays. © 2012 Wiley Periodicals, Inc.
机译:综合视觉系统(SVS)使用GPS数据库和三维图形模型通过驾驶舱显示为飞行员呈现地形特征。增强型视觉系统(EVS)使用飞机机头中的前瞻性传感器显示地形的红外图像。 SVS和EVS技术的最终目标是支持飞行员在低能见度和夜间条件下(与晴朗的白天条件相当)实现安全。这项研究在仪器气象条件下的模拟着陆进近过程中,评估了高级平视显示器(HUD)中SVS和EVS图像的飞行员性能和态势感知(SA)效果。将具有各种HUD配置的着陆视频展示给了八名具有叠加跟踪任务的飞行员。自变量包括四个HUD功能配置(基线[无地形图像],SVS,EVS,以及SVS和EVS的组合),两个可见性条件和飞行的四个航段。结果表明,由于视觉上与其他显示功能的混淆,SVS增加了总体SA,但降低了飞行路径控制性能。 EVS提高了飞行路径控制的准确性,但由于视觉干扰而降低了系统(飞机)的意识。 SVS和EVS的组合产生了抵消效果。显示配置不影响飞行员的空间意识。在该方法的各个阶段之间,飞行性能没有不同,但是飞行员SA的水平和类型确实因腿而异。这些结果适用于开发自适应HUD功能以支持飞行员性能。他们支持使用SA的多维度量来洞察高级航空显示器的飞行员信息处理。 ©2012 Wiley Periodicals,Inc.

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