Genetic robustification of digital model-following flight-control systems

B. Porter, D. Hicks
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引用次数: 11

Abstract

The dynamical characteristics of high-performance fighter aircraft vary considerably over typical operational flight envelopes, and digital model-following flight-control systems for such aircraft must accordingly be robust. However, the linearised dynamics of such aircraft are usually modelled as partially irregular plants, i.e. plants having rank-defective first Markov parameters for which no robustness results are currently available in the case of fast-sampling digital PID controllers. Genetic algorithms can, however, be used to tune such PID controllers so as to robustify them over entire flight envelopes. This use of genetic algorithms is illustrated by the design of a robustified digital model-following flight-control system for an open-loop unstable F-16 aircraft operating over a flight envelope involving three different flight conditions.<>
数字模型跟踪飞行控制系统的遗传鲁棒性
高性能战斗机的动力特性在典型的作战飞行包线上变化很大,因此这种飞机的数字模型跟踪飞行控制系统必须具有鲁棒性。然而,这种飞机的线性化动力学通常被建模为部分不规则植物,即具有秩缺陷的第一马尔可夫参数的植物,在快速采样数字PID控制器的情况下,目前没有鲁棒性结果。然而,遗传算法可以用来调整这种PID控制器,以便在整个飞行包线上对它们进行鲁棒化。遗传算法的使用通过设计一个鲁棒数字模型跟踪飞行控制系统来说明,该系统用于一架开环不稳定的F-16飞机,该飞机在包含三种不同飞行条件的飞行包线上运行
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