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The Effects of Advanced 'Glass Cockpit' Displayed Flight Instrumentation on In-flight Pilot Decision Making.

机译:先进的“玻璃座舱”显示飞行仪表对飞行中飞行员决策的影响。

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摘要

The Cognitive Continuum Theory (CCT) was first proposed 25 years ago to explain the relationship between intuition and analytical decision making processes. In order for aircraft pilots to make these analytical and intuitive decisions, they obtain information from various instruments within the cockpit of the aircraft. Advanced instrumentation is used to provide a broad array of information about the aircraft condition and flight situation to aid the flight crew in making effective decisions. The problem addressed is that advanced instrumentation has not improved the pilot decision making in modern aircraft. Because making a decision is dependent upon the information available, this experimental quantitative study sought to determine how well pilots organize and interpret information obtained from various cockpit instrumentation displays when under time pressure. The population for this study was the students, flight instructors, and aviation faculty at the Middle Georgia State College School of Aviation campus in Eastman, Georgia. The sample was comprised of two groups of 90 individuals (45 in each group) in various stages of pilot licensure from student pilot to airline transport pilot (ATP). The ages ranged from 18 to 55 years old. There was a statistically significant relationship at the p < .05 level in the ability of the participants to organize and interpret information between the advanced glass cockpit instrumentation and the traditional cockpit instrumentation. It is recommended that the industry explore technological solutions toward creating cockpit instrumentation that could match the type of information display to the type of decision making scenario in order to aid pilots in making decisions that will result in better organization of information. Understanding the relationship between the intuitive and analytical decisions that pilots make and the information source they use to make those decisions will aid engineers in the design of instrumentation in the aircraft cockpit, improve pilot decision making, and increase the safety of flight.
机译:认知连续理论(CCT)于25年前首次提出,旨在解释直觉与分析性决策过程之间的关系。为了使飞机驾驶员做出这些分析性和直观的决定,他们从飞机驾驶舱内的各种仪器中获取信息。先进的仪器用于提供有关飞机状况和飞行状况的广泛信息,以帮助机组人员做出有效的决策。解决的问题是,先进的仪器并不能改善现代飞机的飞行员决策能力。因为做出决定取决于可用的信息,所以该实验定量研究试图确定飞行员在时间压力下如何组织和解释从各种驾驶舱仪表显示中获得的信息。这项研究的对象是佐治亚州伊士曼市的佐治亚州立中央大学航空学院校园内的学生,飞行教练和航空系。样本由两组90人组成(每组45个人),处于从学生飞行员到航空运输飞行员(ATP)的飞行员执照的各个阶段。年龄从18至55岁不等。在参与者参与组织和解释高级玻璃驾驶舱仪器与传统驾驶舱仪器之间的信息的能力方面,在p <.05级别上存在统计学上的显着关系。建议业界探索创建可将信息显示类型与决策场景类型相匹配的驾驶舱仪表的技术解决方案,以帮助飞行员做出能够更好地组织信息的决策。了解飞行员做出的直观决策和分析决策与他们用来做出这些决策的信息源之间的关系,将有助于工程师设计飞机座舱中的仪表,改善飞行员的决策制定并提高飞行安全性。

著录项

  • 作者

    Steigerwald, John.;

  • 作者单位

    Northcentral University.;

  • 授予单位 Northcentral University.;
  • 学科 Aerospace engineering.;Transportation.;Business administration.
  • 学位 D.B.A.
  • 年度 2015
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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