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Examining operational errors in the National Airspace System using temporal marker framework.

机译:使用时间标记框架检查国家空域系统中的操作错误。

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摘要

In air traffic control, an operational error is a loss of separation between two aircraft where the air traffic controller is at fault. Operational errors progress in a chain-like sequence of events. The evolution of an operational error can be studied using a progression system called temporal marker framework and can assist in identifying trends and lead to mitigation policies. Air traffic control error progression has not been previously studied with a large sample. This research used a quantitative correlational analysis of Temporal Marker Time Spans (TMTS), the time difference between the temporal marker categories occurring during an operational error, to determine any significant statistical association between the TMTS by workload as measured by the number of aircraft on the sector at the time of the error. Seventy-three errors were discarded because of audio and visual quality problems and two because they were not procedural errors. The final sample consisted of 334 en-route operational errors. Terminal Radar Approach Control operational errors were not available for download. Errors occurring in the control tower environment were not examined because the Temporal Marker Framework system was designed solely for operational errors in the radar environment. The research questions postulated whether the progression of the operation error, as measured by the TMTS, would be affected by controller workload as measured by the number of aircraft in the sector at the time of the error. None of the TMTS research questions resulted in a statistically significant correlation between any of the TMTS studied and the number of aircraft in the sector at the time of the error. The lack of statistical significance suggests that either other variables are potentially contributory or additional TMTS might need to be studied. Additionally, it was theorized that the progression could be dependent on past events based upon extrapolation from the present. It was further conjectured that the situation as it was unfolding and the reactions of the involved controller could affect the progression of the operational error. Future research should include a better sample of working SATORI re-creations, other variables and statistical methodologies, terminal OEs, and additional TMTS.
机译:在空中交通管制中,操作错误是空中交通管制员出了故障的两架飞机之间的间隔损失。操作错误按事件链状顺序进行。可以使用称为时间标记框架的进度系统研究操作错误的演变,并且可以帮助识别趋势并制定缓解策略。以前尚未以大样本研究空中交通管制错误进展。这项研究使用了时间标记时间跨度(TMTS)的定量相关分析(TMTS),即在操作错误期间发生的时间标记类别之间的时间差,从而确定了工作负荷下TMTS之间的任何显着统计关联,该关联由飞机上飞机的数量来衡量。发生错误时的扇区。由于音频和视觉质量问题而丢弃了73个错误,而由于它们不是程序错误而丢弃了两个错误。最终样本包括334个航路操作错误。终端雷达进近控制操作错误无法下载。由于临时标记框架系统是专为雷达环境中的操作错误而设计的,因此未检查在控制塔环境中发生的错误。研究问题假设,由TMTS衡量的操作错误的进展是否会受到控制器工作量的影响,该错误由发生错误时该部门中飞机的数量来衡量。 TMTS的任何研究问题均未导致所研究的任何TMTS与发生错误时该部门的飞机数量之间具有统计上的显着相关性。缺乏统计意义表明,其他变量可能有潜在贡献,或者可能需要研究其他TMTS。另外,理论上认为,进展可能取决于基于当前推断的过去事件。进一步推测,这种情况正在发展,所涉及的控制器的反应可能会影响操作错误的进展。未来的研究应包括更好的SATORI娱乐工作样本,其他变量和统计方法,最终OE和其他TMTS。

著录项

  • 作者

    Bricker, David.;

  • 作者单位

    Northcentral University.;

  • 授予单位 Northcentral University.;
  • 学科 Business Administration Management.Transportation.Psychology Cognitive.Psychology Industrial.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 220 p.
  • 总页数 220
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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