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Assessing Control Devices for the Supervisory Control of Autonomous Wingmen

机译:评估自动控翼监督控制的控制装置

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The present study aims to enhance the design of future cockpits by supporting pilots in their monitoring and control of autonomous wingmen. In our scenario, autonomous wingmen are F-16 aircraft that can fly autonomously; a real capability currently under development by industry partners. These autonomous fighter aircraft exist to enhance mission effectiveness by reducing the risk of harm to humans, increasing sensor coverage, providing access to more environments, and decreasing cost. However, the method and systems used for interaction between pilots and the autonomous systems are still under development and an active area of research. In collaboration with industry partners, we are assessing different control input devices for supervisory control of autonomous fighter aircraft in a flight simulator. In this simulator, 60 participants will fly various mission types with autonomous wingmen using one of three different types of controllers: Microsoft Sidewinder, F-35 Hands on Throttle and Stick (HOTAS), and a wrist-mounted computer gaming keypad. Pilots will interact with their autonomous wingmen for brief periods of time through calling “plays” that initiate the unmanned aircraft to conduct a task in combat scenarios. Physiological data will be collected via electroencephalogram (EEG), electrocardiogram (ECG), and galvanic skin response (GSR). Eye movements and behavioral measures of reliance on the autonomous wingmen and usage of each of the aforementioned controllers will also be collected. These data, in addition to survey responses, will inform design recommendations for optimal interaction with autonomous wingmen.
机译:本研究旨在通过支持飞行员在自主僚机的监测和控制中来增强未来驾驶舱的设计。在我们的情景中,自主僚机是F-16飞机,可以自主飞行;行业合作伙伴目前正在开发的真正能力。这些自治战斗机存在以通过降低对人类的伤害风险,增加传感器覆盖,提供更多环境,降低成本,以提高任务效率。然而,用于飞行员与自主系统之间的相互作用的方法和系统仍在开发和活跃的研究领域。我们与行业合作伙伴合作,我们正在评估飞行模拟器中自治战斗机监控的不同控制输入装置。在这个模拟器中,60名参与者将使用三种不同类型的控制器中的一种与自动僚机一起飞行各种任务类型:Microsoft Sidewinder,F-35手放在节流阀和棍子(HOTAS)和腕上的电脑游戏键盘上。飞行员将与他们的自主僚机互动,以简要介绍一段时间,通过致电“戏剧”,该飞机在战斗情景中进行无人驾驶的飞机进行任务。生理数据将通过脑电图(EEG),心电图(ECG)和电流皮肤响应(GSR)收集。还将收集眼部运动和依赖于自主翼的行为措施和每个上述控制器的使用。除调查答复外,这些数据还将为与自动僚机的最佳互动提供设计建议。

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