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Multi-objective evolutionary–fuzzy augmented flight control for an F16 aircraft

机译:F16飞机的多目标进化-模糊增强飞行控制

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摘要

In this article, the multi-objective design of a fuzzy logic augmented flight controller for a high performance fighter jet (the Lockheed-Martin F16) is described. A fuzzy logic controller is designed and its membership functions tuned by genetic algorithms in order to design a roll, pitch, and yaw flight controller with enhanced manoeuverability which still retains safety critical operation when combined with a standard inner-loop stabilizing controller. The controller is assessed in terms of pilot effort and thus reduction of pilot fatigue. The controller is incorporated into a six degree of freedom motion base real-time flight simulator, and flight tested by a qualified pilot instructor.
机译:在本文中,描述了用于高性能战斗机(洛克希德·马丁F16)的模糊逻辑增强型飞行控制器的多目标设计。设计了模糊逻辑控制器,并通过遗传算法调整了其隶属函数,以设计具有增强的可操纵性的侧倾,俯仰和偏航飞行控制器,当与标准内环稳定控制器结合使用时,该控制器仍保持安全性至关重要的操作。根据飞行员的努力评估控制器,从而减轻飞行员的疲劳感。控制器被集成到六自由度运动基座实时飞行模拟器中,并由合格的飞行员进行飞行测试。

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