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Nonlinear 3D path following control of a fixed-wing aircraft based on acceleration control

机译:基于加速度控制的固定翼飞机控制下的非线性3D路径

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摘要

This paper focuses on the design of a novel path following control concept for fixed-wing aircraft, which systematically incorporates the nonlinearities of the flight dynamics. By introducing an acceleration based inner loop control, feedforward acceleration demands of nonlinear 3D paths can be directly taken into account. Furthermore, the nonlinear effects of airspeed, orientation, and gravity are considered separately by implementing a cascaded design and feedback linearization. As a result, robust performance of the path following control is achieved even for wind speeds in the order of the aircraft's airspeed and path accelerations significantly higher than the gravitational acceleration. By further including direct lift control, a high-bandwidth vertical acceleration control is developed. Results of flight experiments show that the designed control concept is particularly beneficial in terms of the tracking performance for 3D paths, the incorporation of input constraints, the robustness against wind and turbulence effects, and the ease of implementation as well as the low computational complexity.
机译:本文重点介绍了对固定翼飞机控制概念进行了新颖途径的设计,系统地融入了飞行动态的非线性。通过引入基于加速的内环控制,可以直接考虑非线性3D路径的前馈加速要求。此外,通过实现级联设计和反馈线性化来分别考虑空速,取向和重力的非线性效应。结果,即使在飞机的空速顺序和显着高于引力加速度的路径加速度的顺序中,甚至可以实现对控制之后的路径的鲁棒性能。通过进一步包括直接提升控制,开发了高带宽垂直加速度控制。飞行实验结果表明,设计的控制概念在3D路径的跟踪性能方面特别有益,输入限制的融合,对风和湍流效应的鲁棒性以及易于实现以及低计算复杂性。

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