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The impact of controller support tools in enroute air traffic control on cognitive error modes: A comparative analysis in two operational environments

机译:管制员支持工具在空中交通管制中对认知错误模式的影响:两种运行环境下的比较分析

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Air traffic is increasing worldwide. In order to accommodate the anticipated rapid growth in air traffic in the future, changes are required to increase the capacity of the airspace. Although major structural changes in air traffic management in Europe are still underway through the implementation of 4D trajectories, many changes happened and are happening now through the introduction of new automated features in the enroute air traffic control systems. Examples of such air traffic control features are electronic coordination and conflict detection tools designed for air traffic controllers. Although it is likely that these controller support tools may decrease the possibilities of cognitive error, the introduction of new tasks may also introduce new sources of cognitive error. This paper describes the results of a qualitative analysis conducted in two European Area Control Centers, and compares possible cognitive error modes using the TRACEr method. The results show that for an operational environment equipped with controller support tools, the cognitive errors that may occur, have changed. Errors related to detection, memory, decision-making and action execution may decrease. However, new tasks related to the controller support tools may also introduce new errors such as those related to timely detection of information. Furthermore, the results show that there is a shift in type of errors which may occur during the execution of tasks. System safety may be increased through eliminating or reducing possibilities for cognitive error, increasing error recovery opportunities and indirectly through reducing mental workload related to the execution of tasks. (C) 2014 Published by Elsevier Ltd.
机译:全球空中交通正在增加。为了适应未来空中交通的预期快速增长,需要进行更改以增加空域的容量。尽管通过实施4D轨迹,欧洲空中交通管理的主要结构变化仍在进行中,但通过在航路空中交通控制系统中引入新的自动化功能,许多变化已经发生并且正在发生。这种空中交通管制功能的示例是为空中交通管制员设计的电子协调和冲突检测工具。尽管这些控制器支持工具可能会减少认知错误的可能性,但是新任务的引入也可能会引入认知错误的新来源。本文介绍了在两个欧洲区域控制中心进行的定性分析结果,并使用TRACEr方法比较了可能的认知错误模式。结果表明,对于配备有控制器支持工具的操作环境,可能发生的认知错误已更改。与检测,记忆,决策和动作执行有关的错误可能会减少。但是,与控制器支持工具有关的新任务也可能会引入新的错误,例如与及时检测信息有关的错误。此外,结果表明,在执行任务期间可能会发生错误类型的变化。通过消除或减少认知错误的可能性,增加错误恢复的机会以及间接减少与任务执行相关的精神工作量,可以提高系统安全性。 (C)2014由Elsevier Ltd.出版

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