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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Neural network-based nonlinear dynamic inversion control of variable-span morphing aircraft
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Neural network-based nonlinear dynamic inversion control of variable-span morphing aircraft

机译:基于神经网络的可变跨度变形飞机的非线性动态反转控制

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摘要

A nonlinear command and stability augmentation system is designed based on feedback linearization for a morphing aircraft in the presence of different variable-span configurations. A variable-span morphing aircraft model is obtained by modifying a conventional aircraft model. Feed-forward neural networks are trained to learn the inverse dynamics in various morphing configurations and flight conditions. An attitude orientation system is designed to stabilize the airframe and track the commanded angular rates. Finally, an online adaptive mechanism is employed to compensate for inversion error. Even when the aircraft is changing the morphing configuration while maneuvering, the proposed design satisfies the desired handling quality specifications. Consequentially, the proposed design provides another degree of freedom to manipulate the morphing configuration, and therefore agility or fuel efficiency can be improved. Numerical simulation is performed to demonstrate the effectiveness of the proposed scheme.
机译:非线性指令和稳定增强系统是基于在不同的可变跨度配置存在下为变形飞机的反馈线性化设计的。通过修改传统的飞机模型获得可变跨度变形飞机模型。训练前馈神经网络,以学习各种变形配置和飞行条件中的逆动力学。姿态方向系统旨在稳定机身并跟踪命令的角度速率。最后,采用在线自适应机制来补偿反演误差。即使当飞机在机动时改变变形配置时,所提出的设计也满足了所需的处理质量规格。因此,所提出的设计提供了另一种自由度来操纵变形配置,因此可以改善敏捷或燃料效率。执行数值模拟以证明所提出的方案的有效性。

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