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An analysis of the immersed perspective flight path display benefit: Benefits of preview, prediction, and frame of reference.

机译:对沉浸式透视飞行路线显示的好处进行了分析:预览,预测和参考系的好处。

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摘要

A theoretical explanation for an immersed perspective flight path display is investigated in this dissertation. Past research suggests that the immersed perspective flight path display ("tunnel-in-the-sky") can improve flight path tracking when compared to more conventional flight navigation instruments but at present the specific sources of this benefit have not adequately been explained.;On the basis of past research, four properties of the tunnel were investigated. These are: egocentric frame of reference, preview of the flight path, prediction of future aircraft location, and a high display gain.;The four variables of frame of reference, preview, prediction, and display gain were experimentally contrasted in a partially crossed factorial design to investigate the relative contributions of each variable to the tunnel benefit. A quickened display condition was also included. Twenty-four subjects were asked to fly an aircraft through a series of vertically and laterally changing flight paths on a PC based simulation using eleven different displays incorporating the variables of interest. The dependent measures of root mean squared error in lateral and vertical tracking, mean number of resets, and mean number of control inputs were collected.;The results showed that preview benefits were greater than those of prediction. An interaction of prediction and preview was found, with the benefits of prediction sometimes being contingent on the presence of preview. Explanations of control order account for the finding that prediction and preview benefited lateral tracking more than vertical tracking. Frame of reference was found to play a large role in the tunnel benefit. This was especially true in conjunction with preview such that performance without a tunnel was benefited by an egocentric viewpoint. The large cost of an exocentric frame of reference was mediated by the paired presence of prediction and preview in the altitude data. The larger display gain appears to account for no portion of the egocentric frame of reference benefit.
机译:本文研究了浸入式透视航迹显示的理论解释。过去的研究表明,与更传统的飞行导航仪相比,沉浸式透视飞行路径显示(“空中隧道”)可以改善飞行路径跟踪,但是目前尚未充分解释这种好处的具体来源。在以往研究的基础上,对隧道的四个特性进行了研究。这些是:以自我为中心的参考系,飞行路径的预览,对未来飞机位置的预测以及较高的显示增益。;在部分交叉的阶乘中,实验对比了参考系,预览,预测和显示增益的四个变量。设计以调查每个变量对隧道效益的相对贡献。还包括加快的显示条件。在一个基于PC的模拟系统上,二十四名受试者被要求驾驶一架飞机通过一系列垂直和横向变化的飞行路径,使用包含感兴趣变量的十一种不同的显示器。收集了横向和垂直跟踪中均方根误差,重置的均值和控制输入的均值的相关量度。结果表明,预览的收益大于预测的收益。发现了预测和预览的交互,预测的好处有时取决于预览的存在。对控制顺序的解释说明了这样的发现,即预测和预览比横向跟踪比横向跟踪更多地受益。人们发现,参考框架在隧道效益中发挥着重要作用。与预览结合使用时尤其如此,以自我为中心的观点使无隧道的表演受益。高程参考系的巨大成本是由海拔数据中的预测和预告的成对存在所介导的。较大的显示增益似乎无法说明以自我为中心的参考益处。

著录项

  • 作者

    Doherty, Shawn Michael.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Psychology Experimental.;Psychology Industrial.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 141 p.
  • 总页数 141
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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