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Anti-disturbance backstepping control for air-breathing hypersonic vehicles based on extended state observer

机译:基于延伸状态观测器的空气呼吸超声波防止扰动抗干扰控制

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In this paper, we propose an anti-disturbance backstepping control approach with extended state observer (ESO) for tracking control of air-breathing hypersonic vehicles. Considering the large uncertainties, the external disturbances, and especially the lack of aerodynamic knowledge, several ESOs are introduced in the backstepping controller. With the total disturbance estimation ability of ESOs, almost no aerodynamic knowledge is needed for the controller design. Meanwhile, ESOs are also used to estimate the derivatives of the virtual control signals. The problem of "explosion of terms" is avoided. A key strategy of the controller is that each step of backstepping is activated successively. Consequently, the closed-loop system has time-scale structure. Rigorous stability proof can be obtained. At last, compared simulation results verify the superior tracking performance of the proposed controller. (C) 2019 ISA. Published by Elsevier Ltd. All rights reserved.
机译:在本文中,我们提出了一种利用延长状态观察器(ESO)的防扰回击控制方法,用于跟踪空气呼吸超声车辆的控制。 考虑到较大的不确定性,外部干扰,特别是缺乏空气动力学知识,在BackStepping控制器中引入了几种ESO。 随着eSOS的总干扰估计能力,控制器设计几乎不需要空气动力学知识。 同时,ESOS也用于估计虚拟控制信号的衍生物。 避免了“争论爆炸”的问题。 控制器的一个关键策略是,逆住的每个步骤都是连续激活的。 因此,闭环系统具有时间尺度结构。 可以获得严格的稳定性证据。 最后,比较仿真结果验证了所提出的控制器的卓越的跟踪性能。 (c)2019 ISA。 elsevier有限公司出版。保留所有权利。

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