首页> 外文会议> >Supervisory control: Air traffic control specialist performance in shared versus traded states
【24h】

Supervisory control: Air traffic control specialist performance in shared versus traded states

机译:监管:空中交通管制专家在共享和交易状态下的表现

获取原文

摘要

The National Airspace System (NAS) is currently undergoing a restructuring in order to reduce flight delays and to increase airspace capacity, flight predictability, process visibility and safety. In general the reduction of constraints and the redistribution of information, authority and decision making capability has been termed "free flight." One aspect of this process of restructuring involves exploring the possibility of delegating some portions of aircraft separation authority to the flight deck. This process of delegation for self-separation to the flight deck and its implications for pilots and air traffic controllers was the topic of this simulation experiment. Seventeen Air Traffic Control Specialists performed in shared and traded supervisory control states. Shared control is the performance of a task by a human operator with the concurrent assistance of automation. Traded control is the process of shifting the handling of a task by either the human operator or automation. In the shared condition, the specialists monitored the airspace with the assistance of a conflict probe. In the traded condition, the specialists performed a secondary task, in addition to monitoring the traffic with the assistance of the conflict probe. The researcher also manipulated the percentage of planes in free flight, 80% and 100%. Indices included controller workload, separation performance, secondary task performance, and questionnaire data. Results indicated that workload was significantly higher in the traded condition, and that there were less separation violations in the shared condition. The participants also performed better on the secondary task in the Traded/100% condition than the Traded 80% condition. The study was funded by the FAA and NASA.
机译:国家空域系统(NAS)目前正在进行重组,以减少航班延误并增加空域容量,飞行可预测性,过程可见性和安全性。通常,减少约束和重新分配信息,权限和决策能力被称为“自由飞行”。重组过程的一方面涉及探索将飞机分离权的某些部分委派给驾驶舱的可能性。该模拟飞行的委托过程是自动分离到驾驶舱及其对飞行员和空中交通管制员的影响。 17名空中交通管制专家在共享和交易的监督控制状态中进行表演。共享控制是人工操作员在自动化的同时协助下执行的任务。贸易控制是由人工操作员或自动化来转移任务处理的过程。在共享条件下,专家在冲突探测器的帮助下对空域进行了监视。在交易状态下,除了在冲突探测器的帮助下监控流量之外,专家还执行第二项任务。研究人员还操纵了自由飞行中飞机的百分比,分别为80%和100%。指标包括控制器工作量,分离绩效,次要任务绩效和调查表数据。结果表明,在交易条件下工作量显着增加,在共享条件下违反隔离的情况较少。与“交易80%”条件相比,参与者在“交易100%”条件下的次要任务中表现也更好。这项研究是由美国联邦航空局和美国宇航局资助的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号