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Integration of Commercial-Off-The-Shelf (COTS) optical trackers with integrated Intelligent Flight Deck technologies.

机译:将现成的商用(COTS)光学跟踪器与集成的智能飞行甲板技术集成在一起。

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摘要

Low visibility is a problem which hinders a pilot's ability to perform successful flight operations. This issue decreases a pilot's situational awareness (SA) and can lead to runway incursion (RI) and controlled flight into terrain (CFIT). The enhancement of SA can subsequently lead to the reduction of these incidents as well as increased safety during flight. This enhancement is achieved via Integrated Intelligent Flight Deck technologies (IIFD), which offer computer-generated three-dimensional imagery of the external environment regardless of the actual conditions.;This system requires a mechanism that provides control for the IIFD display. The apparatus is typically a head tracking device, but current head tracking implementations that are considered for this process are too intricate, too expensive, or publicly inaccessible. In this paper, the use of a Commercial-Off-The-Shelf (COTS) optical tracker as a means of IIFD control is investigated. It involves the justification of optical tracking over other existing tracking types, as well as the selection of a commercially available tracker based on performance and affordability metrics. The results show that a COTS optical tracker that meets those metrics can be a cost-effective device that is suitable for IIFD use within a cockpit of a General Aviation (GA) aircraft.;A pivotal part of the investigation is the impact of signal jitter and engine vibration jitter on the tracking device. This is necessary as the effects of both these disturbances can affect the accuracy necessary for adequate control of the IIFD display. The simulation of engine vibration jitter via a haptic interface is presented in order to generate and assess its physical impact on the cockpit environment. This paper also examines the use of an adaptive smoothing algorithm, designed to curb the erratic effect. The studies reveal that while the haptic device produces limited engine vibration simulation, an adaptive smoother can significantly reduce the impact of jitter on a tracking device affected by that interference.
机译:能见度低是一个问题,妨碍了飞行员执行成功的飞行操作的能力。此问题降低了飞行员的态势感知(SA),并可能导致跑道侵入(RI)和受控飞行进入地形(CFIT)。 SA的增强随后可以减少这些事故并提高飞行中的安全性。这种增强是通过集成智能飞行甲板技术(IIFD)来实现的,该技术可以提供计算机生成的外部环境的三维图像,而不管实际情况如何。该系统需要一种机制来为IIFD显示提供控制。该设备通常是头部跟踪设备,但是目前考虑用于该过程的头部跟踪实施太复杂,太昂贵或公众无法访问。在本文中,研究了使用现成的商用(COTS)光学跟踪器作为IIFD控制的手段。它涉及在其他现有跟踪类型上进行光学跟踪的理由,以及根据性能和可负担性指标选择商用跟踪器。结果表明,满足这些指标的COTS光学跟踪仪可以是一种经济高效的设备,适合在通用航空(GA)飞机驾驶舱内进行IIFD使用。;研究的关键部分是信号抖动的影响以及跟踪装置上的发动机振动抖动。这是必要的,因为这两种干扰的影响都可能影响对IIFD显示进行适当控制所需的精度。为了产生并评估其对驾驶舱环境的物理影响,提出了通过触觉界面对发动机振动抖动进行仿真的方法。本文还研究了旨在抑制不稳定影响的自适应平滑算法的使用。研究表明,尽管触觉设备产生有限的发动机振动模拟,但自适应平滑器可以显着减少抖动对受该干扰影响的跟踪设备的影响。

著录项

  • 作者

    Small, Schinnel K.;

  • 作者单位

    Morgan State University.;

  • 授予单位 Morgan State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 D.Eng.
  • 年度 2010
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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