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Nonlinear disturbance observer enhanced predictive control for airbreathing hypersonic vehicles

机译:航空高超声速飞行器的非线性干扰观测器增强的预测控制

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The robust optimized tracking control problem for a generic airbreathing hypersonic vehicle (AHV) subject to nonvanishing mismatched disturbances/uncertainties is investigated in this paper. A baseline nonlinear model predictive controller (MPC) is firstly introduced for optimized tracking control of the nominal dynamics. A nonlinear disturbance observer (NDO) based control law is then developed for robustness enhancement in the presence of both external disturbances and uncertainties. Compared with the existing robust tracking control methods for AHVs, the proposed composite nonlinear MPC method obtains not only promising robustness and disturbance rejection performance but also optimized nominal tracking control performance. The merits of the proposed method are validated by implementing simulation studies on the AHV system.
机译:本文研究了通用航空呼吸超音速飞行器(AHV)在不失配失配扰动/不确定性的约束下的鲁棒优化跟踪控制问题。首先引入基线非线性模型预测控制器(MPC),以优化名义动力的跟踪控制。然后,开发了基于非线性干扰观测器(NDO)的控制律,以在存在外部干扰和不确定性的情况下增强鲁棒性。与现有的用于AHV的鲁棒跟踪控制方法相比,所提出的复合非线性MPC方法不仅获得了有希望的鲁棒性和干扰抑制性能,而且还优化了标称跟踪控制性能。通过对AHV系统进行仿真研究,验证了该方法的优点。

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