Research on Fault Estimation and Fault-tolerant Control of Hypersonic Aircraft Based on Adaptive Observer

Yifan Fang, B. Jiang, Xunhong Lv, Zehui Mao
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Abstract

This paper studies a fault estimation and fault-tolerant control scheme for a class of hypersonic aircraft with actuator faults and disturbances. In order to obtain the unknown fault imformation, a robust adaptive observer is established with the adaptive law for fault estimation, and the design conditions are derived through the Lyapunov stability analysis to ensure the estimation errors uniformly bounded and satisfy certain $H_{\infty}$ performance. For the purpose of fault accommodation in the hypersonic vehicle, an active fault-tolerant controller is constructed to make the faulty system uniformly bounded and satisfy some $H_{\infty}$ performance. Finally, the feasibility of the fault estimation and fault-tolerant control method which is developed in this research is verified on the semi-physical simulation platform of a hypersonic aircraft.
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基于自适应观测器的高超声速飞行器故障估计与容错控制研究
研究了一类具有执行器故障和扰动的高超声速飞行器的故障估计和容错控制方案。为了获取未知故障信息,利用故障估计自适应律建立鲁棒自适应观测器,并通过Lyapunov稳定性分析导出设计条件,保证估计误差一致有界并满足一定$H_{\infty}$性能。针对高超声速飞行器的容错问题,构造了一种主动容错控制器,使故障系统均匀有界并满足$H_{\infty}$性能要求。最后,在高超声速飞行器半物理仿真平台上验证了所提出的故障估计和容错控制方法的可行性。
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