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Nonlinear attitude control based on extended state observer for hypersonic vehicles

机译:基于扩展状态观测器的高超声速飞行器非线性姿态控制

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In this paper, a dynamic surface control strategy based on extended state observer is proposed for reentry attitude control of hypersonic vehicles with the presence of external disturbances and modeling uncertainties. Firstly, according to time scale, the system is divided into two parts, i.e. the inner subsystem and outer subsystem. Secondly, based on the hierarchical idea, two extended state observers are designed to estimate the modeling uncertainties in outer loop and external disturbance in inner loop respectively. Then, control laws of two subsystems are designed using the back-stepping technique. In order to improve the robustness, sliding model surface is used, and dynamic surface control technique is adopted to avoid explosion complexity caused by repeated derivative in back-stepping. Finally, the numerical simulation shows the power of this approach.
机译:本文提出了一种基于扩展状态观测器的动态表面控制策略,该方法用于在有外部干扰和模型不确定性的情况下对超音速飞行器的再入姿态进行控制。首先,根据时间尺度,将系统分为两个部分,即内部子系统和外部子系统。其次,基于分层思想,设计了两个扩展状态观测器,分别估计外环和外环的建模不确定性。然后,采用后推技术设计了两个子系统的控制律。为了提高鲁棒性,使用了滑动模型表面,并采用了动态表面控制技术来避免由于后推过程中重复导数而引起的爆炸复杂性。最后,数值仿真表明了这种方法的强大功能。

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