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Contributions of Stereopsis and Aviation Experience to Simulated Rotary Wing Altitude Estimation

机译:立体试析和航空经验对模拟旋转翼高空估计的贡献

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Objective We examined the contribution of binocular vision and experience to performance on a simulated helicopter flight task. Background Although there is a long history of research on the role of binocular vision and stereopsis in aviation, there is no consensus on its operational relevance. This work addresses this using a naturalistic task in a virtual environment. Method Four high-resolution stereoscopic terrain types were viewed monocularly and binocularly. In separate experiments, we evaluated performance of undergraduate students and military aircrew on a simulated low hover altitude judgment task. Observers were asked to judge the distance between a virtual helicopter skid and the ground plane. Results Our results show that for both groups, altitude judgments are more accurate in the binocular viewing condition than in the monocular condition. However, in the monocular condition, aircrew were more accurate than undergraduate observers in estimating height of the skid above the ground. Conclusion At simulated altitudes of 5 ft (1.5 m) or less, binocular vision provides a significant advantage for estimation of the depth separation between the landing skid and the ground, regardless of relevant operational experience. However, when binocular cues are unavailable aircrew outperform undergraduate observers, a result that likely reflects the impact of training on the ability to interpret monocular depth cues.
机译:目标我们审查了双目视觉和经验对模拟直升机飞行任务的绩效的贡献。背景技术虽然有悠久的双目视觉和立体化在航空中的作用历史,但没有关于其运作相关的共识。这项工作在虚拟环境中使用自然主义的任务来解决这个问题。方法单眼和双眼观察四种高分辨率立体地形类型。在单独的实验中,我们在模拟低悬停高度判断任务中评估了本科生和军事机组的表现。要求观察员判断虚拟直升机滑行和地面平面之间的距离。结果我们的结果表明,对于这两个组,高度判断在双目观察条件下比单手套状况更准确。然而,在单眼情况下,在估计地面上方的滑块高度时,机组人员比本科观察者更准确。结论在模拟海拔5英尺(1.5米)或更小,双目视觉提供了一个显着的优势,可以估计着陆滑块与地面之间的深度分离,无论相关的操作经验如何。然而,当双目线索不可用的机组螺旋形式营业型本科观察者时,可能反映了培训对解释单手套深度提示的能力的影响。

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