MRAC Adaptive Control Design for an F15 Aircraft Pitch Angular Motion Using Dynamics Inversion and Fractional-Order Filtering

Amani R. Ynineb, S. Ladaci
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引用次数: 4

Abstract

This study proposes a fractional adaptive control scheme design for a longitudinal pitch angular motion control of a military F15 aircraft. The aircraft behavior will be forced to follow a chosen model reference in an MRAC (Model Reference Adaptive Control) configuration combined with dynamics inversion technique such that the transient response becomes invariant even in the presence of uncertainties or variations for a reference input by introducing a fractional-order transfer function pre-filter. Based on Lyapunov theory, the updating control law minimizes the error between the plant output and the model reference one. This controller is set in a cascade with a linear dynamic compensator. Simulation results on a military aircraft model with comparison to preceding results illustrate the effectiveness and the superiority of the proposed control strategy.
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基于动力学反演和分数阶滤波的F15飞机俯仰角运动MRAC自适应控制设计
针对军用F15飞机纵向俯仰角运动控制问题,提出了一种分段自适应控制方案。在MRAC(模型参考自适应控制)配置中,结合动态反演技术,飞机行为将被迫遵循选定的模型参考,这样即使在引入分数阶传递函数预滤波器的参考输入存在不确定性或变化的情况下,瞬态响应也会保持不变。基于李雅普诺夫理论的更新控制律使目标输出与模型参考输出之间的误差最小。该控制器采用线性动态补偿器串级设置。在某军用飞机模型上的仿真结果与前面的结果进行了比较,验证了所提控制策略的有效性和优越性。
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