超音速飞机作战等效视觉技术评价

L. Kramer, Steven P. Williams, Susan J. Wilz, J. Arthur, R. Bailey
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引用次数: 4

摘要

24名航空运输级飞行员作为受试者参加了一项基于固定的模拟实验,以评估综合/增强视觉(S/EV)和外部视觉系统(XVS)技术作为未来全天候作战的使能技术的使用。评估了三种平视飞行显示器概念——单色、准直平视显示器(HUD)和彩色、非准直XVS显示器,其视场(FOV)等于并明显大于准直HUD。进行了进近、着陆、离场和地面操作。此外,通过改变视攻角(AOA)(高/低)来研究垂直视场显示要求,并通过实验改变周边和侧窗的能见度。数据显示,无论评估显示类型和AOA状况,也无论侧窗是否有周边提示,侧向进近跟踪性能和侧向着陆位置都非常出色。纵向着陆和滑行跟踪受显示概念的影响。与较小的FOV显示概念相比,更大的FOV显示概念改进了纵向着地控制,优越的滑翔跟踪,显著的态势感知改进和工作量减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of equivalent vision technologies for supersonic aircraft operations
Twenty-four air transport-rated pilots participated as subjects in a fixed-based simulation experiment to evaluate the use of Synthetic/Enhanced Vision (S/EV) and eXternal Vision System (XVS) technologies as enabling technologies for future all-weather operations. Three head-up flight display concepts were evaluated - a monochromatic, collimated Head-up Display (HUD) and a color, non-collimated XVS display with a field-of-view (FOV) equal to and also, one significantly larger than the collimated HUD. Approach, landing, departure, and surface operations were conducted. Additionally, the apparent angle-of-attack (AOA) was varied (high/low) to investigate the vertical field-of-view display requirements and peripheral, side window visibility was experimentally varied. The data showed that lateral approach tracking performance and lateral landing position were excellent regardless of the display type and AOA condition being evaluated or whether or not there were peripheral cues in the side windows. Longitudinal touchdown and glideslope tracking were affected by the display concepts. Larger FOV display concepts showed improved longitudinal touchdown control, superior glideslope tracking, significant situation awareness improvements and workload reductions compared to smaller FOV display concepts.
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