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Prediction of Traffic Complexity and Controller Workload in Mixed Equipage NextGen Environments

机译:NextGen环境下交通复杂性和控制器工作量的预测

摘要

Controller workload is a key factor in limiting en route air traffic capacity. Past efforts to quantify and predict workload have resulted in identifying objective metrics that correlate well with subjective workload ratings during current air traffic control operations. Although these metrics provide a reasonable statistical fit to existing data, they do not provide a good mechanism for estimating controller workload for future air traffic concepts and environments that make different assumptions about automation, enabling technologies, and controller tasks. One such future environment is characterized by en route airspace with a mixture of aircraft equipped with and without Data Communications (Data Comm). In this environment, aircraft with Data Comm will impact controller workload less than aircraft requiring voice communication, altering the close correlation between aircraft count and controller workload that exists in current air traffic operations. This paper outlines a new trajectory-based complexity (TBX) calculation that was presented to controllers during a human-in-the-loop simulation. The results showed that TBX accurately estimated the workload in a mixed Data Comm equipage environment and the resulting complexity values were understood and readily interpreted by the controllers. The complexity was represented as a "modified aircraft account" that weighted different complexity factors and summed them in such a way that the controllers could effectively treat them as aircraft count. The factors were also relatively easy to tune without an extensive data set. The results showed that the TBX approach is well suited for presenting traffic complexity in future air traffic environments.
机译:管制员的工作量是限制途中空中交通容量的关键因素。过去量化和预测工作量的努力已导致确定客观指标,该指标与当前空中交通管制操作期间的主观工作量等级密切相关。尽管这些指标为现有数据提供了合理的统计拟合,但它们并没有提供一种很好的机制来估算未来的空中交通概念和环境的控制器工作量,这些概念和环境对自动化,启用技术和控制器任务做出了不同的假设。一种这样的未来环境的特征是在途空域中混合有配备和不配备数据通信(Data Comm)的飞机。在这种环境下,具有数据通信功能的飞机对管制员工作量的影响要小于需要语音通信的飞机,从而改变了飞机数量与当前空中交通运营中存在的管制员工作量之间的密切关系。本文概述了一种新的基于轨迹的复杂度(TBX)计算,该计算已在人在环仿真中呈现给控制器。结果表明,TBX可以准确估计混合Data Comm设备环境中的工作量,并且控制器可以理解并轻松解释由此产生的复杂性值。复杂性表示为“修改后的飞机帐户”,该帐户对不同的复杂性因子进行加权,并对其进行求和,以使管制员可以将其有效地视为飞机数量。如果没有大量数据集,这些因素也相对容易调整。结果表明,TBX方法非常适合于表示未来空中交通环境中的交通复杂性。

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    Lee Paul U.; Prevot Thomas;

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  • 年度 2012
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