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Piloted Evaluation of the H-Mode, a Variable AutonomyControl System, in Motion-Based Simulation

机译:试验评估H-Mode,一种可变自动型控制系统,在基于运动的模拟中

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As aircraft become able to autonomously respond to a range of situations with performance surpassing human operators, we are compelled to look for new methods that help understand their use and guide the design of new, more effective forms of automation and interaction. The "H-mode" is one such method and is based on the metaphor of a well-trained horse. The concept allows the pilot to manage a broad, range of control automation functionality, from augmented manual control to FMS-like coupling and automation initiated actions, using a common interface system and easily learned set of interaction skills. The interface leverages familiar manual control inceptors (e.g., the control stick) and flight displays through the addition of contextually dependent haptic-multimodal elements. The concept is relevant to manned and remotely piloted vehicles. This paper provides an overview of the H-mode concept followed by a presentation of the results from a recent evaluation conducted in a motion-based simulator. The evaluation focused on assessing the overall usability and flying qualities of the concept with an emphasis on the effects of turbulence and cockpit motion. Because the H-mode results in interactions between traditional flying qualities and management of higher-level flight path automation, these effects are of particular interest. The results indicate that the concept may provide a useful complement or replacement to conventional interfaces, and retains this usefulness in the presence of turbulence and motion.
机译:由于飞机能够自主地响应具有超过人类运营商的性能的一系列情况,因此我们被迫寻找新方法,帮助了解其使用,并指导设计新的更有效的自动化和互动。 “H模式”是一种这样的方法,基于训练有素的马的隐喻。该概念允许导频来管理广泛的控制自动化功能,从增强手动控制到FMS类似的耦合和自动化启动操作,使用公共接口系统,并易于学习了一组交互技能。该界面利用熟悉的手动控制Inceptor(例如,控制棒)和飞行通过添加上下文依赖的触觉多模式元素来显示。该概念与载人和远程驾驶车辆有关。本文提供了H模式概念的概述,然后是在基于运动的模拟器中进行最近进行的最近评估的结果的呈现。评估侧重于评估概念的整体可用性和飞行品质,重点是湍流和驾驶舱运动的影响。因为H模式导致传统飞行质量与高级飞行路径自动化管理之间的相互作用,因此这些效果特别感兴趣。结果表明,该概念可以为常规界面提供有用的补充或更换,并在湍流和运动的存在下保持这种有用性。

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