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EFFECTS OF UAV SUPERVISORY CONTROL ON F-18 FORMATION FLIGHT PERFORMANCE IN A SIMULATOR ENVIRONMENT

机译:无人机监控对模拟环境中F-18编队飞行性能的影响

摘要

Continual advances in technology, along with increased cockpit workload particularly the shift from two-seat to single-seat fighters to save money and reduce risk to lifepush the limits of human mental capacity. Additionally, there is interest within the military aviation community to integrate Unmanned Aerial Vehicle (UAV) control into the cockpit in order to expand force projection capability. This study compared the effects on formation flight performance of two different secondary tasks, specifically a traditional secondary task such as target prosecution with an electro-optical Forward Looking Infra-Red (FLIR) pod, and a futuristic secondary task such as UAV supervisory control. A total of 34 military fighter aviators volunteered to fly three five-minuteF-18 simulator sessions in close formation with no secondary task, and then treated with each of the two secondary tasks. Results provided clear indication that the futuristic task was significantly more challenging than the traditional task, and that both secondary tasks significantly increased the average mean following distance and variance compared to the undistracted flying baseline scenario. Additionally, we found no evidence that increased flight experience (total flight hours) significantly improved performance of the prescribed primary task when treated with the futuristic task distraction. Knowledge gained from the results could contribute to improved crew resource management (CRM) and pilot workload management as well as flight safety resulting from the modification of flight procedures based on known effects of distractions in the cockpit.
机译:技术的不断进步,以及驾驶舱工作量的增加,特别是从两座战斗机向单座战斗机的转变,以节省金钱并降低生命危险,从而限制了人类的智力。另外,军事航空界内部有兴趣将无人飞行器(UAV)控制集成到驾驶舱中,以扩大力的投射能力。这项研究比较了两个不同的次要任务对编队飞行性能的影响,特别是传统的次要任务,例如带有电光前视红外(FLIR)吊舱的目标起诉,以及未来派的次要任务,例如无人机监视控制。共有34名军事战斗机飞行员自愿进行了三场五分钟的F-18模拟器飞行,它们没有编成次要任务就密密麻麻地飞行,然后接受了这两个次要任务中的每一个。结果清楚地表明,与传统任务相比,未来任务比传统任务更具挑战性,并且两个次要任务均显着增加了平均平均跟随距离和方差。此外,我们没有发现增加飞行经验(总飞行时间)的证据,可以对未来任务分心的治疗明显改善规定的主要任务的性能。从结果中获得的知识可能有助于改善机组人员资源管理(CRM)和飞行员工作量管理,以及由于基于驾驶舱内分散注意力的已知影​​响而修改飞行程序而产生的飞行安全性。

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