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Review of Sensor-to-Eye Latency Effects in Degraded Visual Environment Mitigations

机译:退化的视觉环境缓解中的“传感器到眼睛的延迟影响”综述

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The effect of degraded visual environments (DVE) on aviation is profound. Under reduced-visibility conditions, operational tempo slows to a fraction of its unrestricted-visibility counterpart. Mission capability envelopes are greatly reduced, and some missions cannot be flown. An even more significant problem is the threat of controlled flight into terrain and obstacles, spatial disorientation, and loss of control in flight. Of the 383 Class A and B US military flight accidents between 2002 and 2015, 25% related to operations in DVE and accounted for 81% of the fatalities and $1 billion in lost materiel. In commercial air transport over the past 10 years, there were 1,648 fatalities in 50 accidents due to loss of control in flight. The common theme in these accidents was lack of external visual references. Considerable progress has been made in the development and testing of DVE mitigations, but fielded, operational systems have been elusive. New technologies such as LiDAR, EO/1R, sensor fusion, and helmet-mounted displays (HMDs) are intended to improve pilot performance and expand mission effectiveness. However, much of the effort has focused on separate components. Very little has been devoted to integrated systems, and the human factors components have been all but neglected. This has a detrimental effect on the handling qualities and operational safety of the resulting systems. This paper offers a review of DVE mitigation technology with a focus on human factors requirements for sensor-to-eye latency, monocular, biocular, and binocular display performance, and see-through vs. non-see-through HMD display concepts.
机译:退化的视觉环境(DVE)对航空业的影响是深远的。在可见性降低的情况下,操作速度减慢到其不受限制的可见性的一小部分。任务能力范围大大减少,某些任务无法飞行。甚至更重要的问题是受控飞行威胁到地形和障碍物,空间迷失方向以及飞行失控的威胁。在2002年至2015年的383起A和B类美国军事飞行事故中,有25%与DVE作战有关,占死亡人数的81%和10亿美元的装备损失。在过去的十年中,在商业航空运输中,由于飞行失控,导致50起事故中有1,648人死亡。这些事故的共同主题是缺乏外部视觉参考。在开发和测试DVE缓解措施方面已经取得了相当大的进步,但是在现场运行的系统却难以捉摸。 LiDAR,EO / 1R,传感器融合和头盔显示器(HMD)等新技术旨在改善飞行员性能并扩大任务效率。但是,很多努力都集中在单独的组件上。很少有人致力于集成系统,而人为因素的组成部分几乎被忽略了。这对所得系统的处理质量和操作安全性有不利影响。本文概述了DVE缓解技术,重点关注人为因素对传感器到眼睛的等待时间,单眼,双眼和双眼显示性能的要求,以及透视与非透视HMD显示概念。

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