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Human performance analysis of Controller-Pilot Data Link Communications.

机译:Controller-Pilot数据链路通信的人员性能分析。

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摘要

The researcher examined how the introduction and application of Controller-Pilot Data Link Communications (CPDLC) technology will affect human performance in the single-pilot general aviation work environment. Unlike conventional voice-based air traffic control (ATC) communications technology, the CPDLC system will allow pilots and controllers to exchange text-based messages via specifically designated data links. Instrument-rated pilots ( N = 30) were tested on both a series of CPDLC text command tasks and a series of conventional voice command tasks in a simulated flight environment. Measures of performance were response time and number of errors made in pilot recall/execution across the command condition (voice or text) given the level of command workload (high, moderate, or low) and order of flight presentation (voice or text first). Results revealed a statistically significant decrease in both errors in pilot recall/execution and response times in moving from the conventional voice ATC commands to the CPDLC text commands. Results were significant across all levels of air traffic control command loads (high, moderate, and low). However, a conservative post hoc analysis revealed no significant decrease in pilot response time at the moderate load ATC command level. The results of this study supported the view that human performance can be improved when complex information was presented in visual form and users can refer to the text again. Further data analysis revealed that while pilots responding to the high parameter load text commands had both significantly fewer errors and reduced response times than when responding to the high parameter load voice commands; this performance effect appears to diminish at the moderate and low command workloads. Results lend support for a text-based communications technology which extends pilot's working memory, thereby improving both accuracy and efficiency in performing flight tasks to complex commands.
机译:研究人员研究了控制器-飞行员数据链路通信(CPDLC)技术的引入和应用将如何影响单飞行员通用航空工作环境中的人员绩效。与传统的基于语音的空中交通管制(ATC)通信技术不同,CPDLC系统将允许飞行员和控制器通过专门指定的数据链路交换基于文本的消息。在模拟飞行环境中,对仪表级飞行员(N = 30)进行了一系列CPDLC文本命令任务和一系列常规语音命令任务的测试。绩效的衡量标准是响应时间和飞行员在命令条件下(语音或文本)在召回/执行中犯下的错误数量(给定的命令工作量级别(高,中或低)和飞行提示的顺序(语音或文本优先)) 。结果显示,从常规语音ATC命令转换为CPDLC文本命令时,飞行员召回/执行中的错误和响应时间均在统计上显着减少。在所有级别的空中交通管制命令负荷(高,中和低)上,结果都是显着的。但是,保守的事后分析表明,在中等负荷ATC指令水平下,飞行员的响应时间没有明显减少。这项研究的结果支持这样一种观点,即以可视形式显示复杂信息并且用户可以再次引用该文本时,可以改善人类的表现。进一步的数据分析表明,与对高参数负载语音命令做出响应相比,对高参数负载文本命令做出响应的飞行员错误率大大降低,响应时间缩短了。在中等和较低的命令工作负载下,这种性能影响似乎会减弱。结果为基于文本的通信技术提供了支持,该技术扩展了飞行员的工作记忆,从而提高了执行复杂任务的飞行任务的准确性和效率。

著录项

  • 作者

    DeMik, Randal J.;

  • 作者单位

    Indiana State University.;

  • 授予单位 Indiana State University.;
  • 学科 Speech Communication.;Psychology Industrial.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 99 p.
  • 总页数 99
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 语言学;工业心理学;
  • 关键词

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