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The effects of terrain discrepancy and the role of texture in enhanced/synthetic vision systems.

机译:地形差异的影响以及纹理在增强/合成视觉系统中的作用。

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This thesis presents the results of a study conducted at the University of Toronto Institute for Aerospace Studies Flight Simulation Laboratory, investigating the effects of terrain discrepancies due to navigation error and texture patterns on pilot performance while using an Enhanced/Synthetic Vision System (E/SVS). Flights in a Bell 205 helicopter simulator incorporating Enhanced/Synthetic Vision were performed. Analysis of the results revealed that in maintaining a target altitude and velocity a plaid texture pattern resulted in the best pilot performance. Also shown was that terrain discrepancy in pitch caused the greatest deviation from the desired velocity and altitude. Pilots performed equally well in comparing slopes independent of the navigation error or texture selection. Navigation error and texture did not affect the ability of pilots to fly constant altitude above sloping terrain or to match their mean heading with the up-slope direction, but roll navigation error resulted in a greater standard deviation in heading.
机译:本文介绍了在多伦多大学航空航天研究所飞行模拟实验室进行的一项研究的结果,该研究调查了使用增强/合成视觉系统(E / SVS)时由于导航误差和纹理图案而引起的地形差异对飞行员性能的影响。 )。在包含增强/合成视觉的Bell 205直升机模拟器中进行了飞行。对结果的分析表明,在维持目标高度和速度时,格子纹理图案可产生最佳的飞行员性能。还显示出,坡度上的地形差异导致与所需速度和高度的最大偏差。在比较与导航误差或纹理选择无关的坡度时,飞行员的表现同样出色。导航误差和质地不会影响飞行员在倾斜的地形上以恒定高度飞行或使其平均航向与上坡方向匹配的能力,但侧倾导航误差会导致更大的航向标准偏差。

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