A Multiobjective G.A./Fuzzy Logic augmented flight controller for an F16 aircraft

P. Stewart, D. Gladwin, M. Parr, J. Stewart
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引用次数: 2

Abstract

An investigation is made in this paper of the possibility of enhancing the performance of controllers of unstable systems while retaining safety critical function. In this case, a general dynamics F16 fighter is considered in simulation. A fuzzy logic controller is designed and its membership functions tuned by multiobjective genetic algorithms in order to design an augmented flight controller with enhanced manouverability which still retains safety critical operation. 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 real-time flight simulator, and flight tested by a qualified pilot instructor.
F16飞机多目标ga /模糊逻辑增强飞行控制器
本文研究了在保持不稳定系统的安全临界函数的同时提高控制器性能的可能性。在这种情况下,在仿真中考虑了F16战斗机的一般动力学。设计了一种模糊控制器,并采用多目标遗传算法对其隶属度函数进行了调整,从而设计出一种具有增强机动性的增强型飞行控制器。管制员是根据飞行员的努力来评估的,因此减少了飞行员的疲劳。控制器被整合到一个六自由度的实时飞行模拟器中,并由合格的飞行员教练进行飞行测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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