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Vision Assisted Aircraft Lateral Navigation

机译:视觉辅助飞机横向导航

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Surface operation is currently one of the least technologically equipped phases of aircraft operation. The increased air traffic congestion necessitates more aircraft operations in degraded weather and at night. The traditional surface procedures worked well in most cases as airport surfaces have not been congested and airport layouts were less complex. Despite the best efforts of FAA and other safety agencies, runway incursions continue to occur frequently due to incorrect surface operation. Several studies conducted by FAA suggest that pilot induced error contributes significantly to runway incursions. Further, the report attributes pilot's lack of situational awareness - local (e.g., minimizing lateral deviation), global (e.g., traffic in the vicinity) and route (e.g., distance to next turn) - to the problem. An Enhanced Vision System (EVS) is one concept that is being considered to resolve these issues. These systems use on-board sensors to provide situational awareness under poor visibility conditions. In this paper, we propose the use of an Image processing based system to estimate the aircraft position and orientation relative to taxiway markings to use as lateral guidance aid. We estimate aircraft yaw angle and lateral offset from slope of the taxiway centerline and horizontal position of vanishing line. Unlike automotive applications, several cues such as aircraft maneuvers along assigned route with minimal deviations, clear ground markings, even taxiway surface, limited aircraft speed are available and enable us to implement significant algorithm optimizations. We present experimental results to show high precision navigation accuracy with sensitivity analysis with respect to camera mount, optics, and image processing error.
机译:表面操作目前是最不技术的飞机运行阶段之一。增加的空中交通拥堵需要在退化的天气和夜间方面需要更多飞机操作。随着机场表面尚未拥挤的,传统的表面程序在大多数情况下工作得很好,并且机场布局不太复杂。尽管FAA和其他安全机构的最佳努力,由于表面运行不正确,跑道侵入频繁频繁发生。 FAA进行的几项研究表明,试点引起的误差会导致跑道入侵有效。此外,报告归因于导频缺乏情境意识 - 本地(例如,最小化横向偏差),全球(例如,附近的流量)和路线(例如,到下一个转弯的距离) - 问题。增强的视觉系统(EVS)是正在考虑解决这些问题的一个概念。这些系统使用车载传感器在可见性条件下提供态势意识。在本文中,我们建议使用基于图像处理的系统来估计相对于滑行道标记的飞机位置和方向,以用作横向引导辅助工具。我们从滑行道中心线的坡度和消失线的水平位置估计飞机偏航角和横向偏移。与汽车应用不同,沿着分配路线等飞机操纵等几种提示,可获得最小的偏差,清晰的地面标记,即使是滑轨表面,有限的飞机速度,并使我们能够实现显着的算法优化。我们提出了实验结果,以了解相机安装,光学和图像处理误差的灵敏度分析高精度导航精度。

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