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Effects of NextGen Concepts of Operation for Separation Assurance and Interval Management on Air Traffic Controller Situation Awareness, Workload, and Performance

机译:NextGen的间隔保证和间隔管理操作概念对空中交通管制员处境意识,工作量和绩效的影响

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Objective: Determine how combinations of NextGen-automation concepts for separation assurance and spacing affect air traffic controller (ATCo) situation awareness, workload, and performance.Background: In previous research, situation awareness was not measured with valid and reliable instruments. Previous work also evaluated separation assurance and spacing concepts individually, and did not examine weather.Method: Retired ATCos worked en route and transitional sectors. Four operating concepts for separation assurance and spacing were tested based on whether automation or ATCo was responsible for each function. Standard methods for assessing workload and situation awareness were used; performance measures included safety and efficiency.Results: Workload was lowest when both functions were automated; however, situation awareness depended on operating concept and sector. In the en route sector, the highest levels of situation awareness were found for ATCo-managed separation assurance and automation-managed spacing. In the transitional sector, the highest situation awareness occurred when ATCos performed both functions. The numbers of loss of separation were highest for ATCo-managed separation assurance; sector complexity depended on weather, but only for automation-managed separation assurance. Spacing efficiency was highest for ATCo-managed separation assurance, but more communications were required.Conclusion: In air traffic management, separation assurance and spacing functions interact with each other in determining ATCo workload, situation awareness, and performance, depending on sector characteristics and weather. Therefore, evaluations of NextGen-automation solutions must include multiple concepts of operation, and involve different sectors and environmental conditions.
机译:目的:确定用于间隔保证和间隔的NextGen自动化概念的组合如何影响空中交通管制员(ATCo)的态势感知,工作量和性能。背景:在以前的研究中,态势感知并未使用有效且可靠的仪器进行测量。先前的工作还单独评估了间隔保证和间隔概念,并且没有检查天气。方法:退休的ATCo在航路和过渡部门工作。根据自动化或ATCo负责每种功能,测试了四个用于保证间隔和间距的操作概念。使用了评估工作量和情况意识的标准方法;结果:当两个功能都自动化时,工作量最低。但是,对态势的了解取决于运营理念和部门。在途中,对ATCo管理的隔离保证和自动化管理的间隔情况了解到最高水平。在过渡部门,ATCo履行两项职能时,对情况的感知最高。对于由ATCo管理的分离保证,分离损失的数量最高;部门的复杂性取决于天气,但仅用于自动化管理的隔离保证。间隔效率是ATCo管理的隔离保证的最高效率,但需要更多的通信。结论:在空中交通管理中,隔离保证和间隔功能在确定ATCo工作量,态势感知和性能方面相互作用,这取决于部门的特性和天气。因此,对NextGen自动化解决方案的评估必须包括多个操作概念,并且涉及不同的部门和环境条件。

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    Calif State Univ Long Beach, Dept Psychol, 1250 North Bellflower Blvd, Long Beach, CA 90840 USA;

    Calif State Univ Long Beach, Dept Psychol, 1250 North Bellflower Blvd, Long Beach, CA 90840 USA;

    Calif State Univ Long Beach, Dept Psychol, 1250 North Bellflower Blvd, Long Beach, CA 90840 USA;

    Calif State Univ Long Beach, Dept Psychol, 1250 North Bellflower Blvd, Long Beach, CA 90840 USA;

    Calif State Univ Long Beach, Dept Psychol, 1250 North Bellflower Blvd, Long Beach, CA 90840 USA;

    San Jose State Univ Fdn, San Jose, CA 95112 USA|NASA Ames Res Ctr, Moffett Field, CA 94035 USA;

  • 收录信息 美国《科学引文索引》(SCI);
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