A Novel Robust Flight Controller Design for an Air-Breathing Hypersonic Vehicle


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Abstract

A novel robust flight control design method is proposed for a generic air-breathing hypersonic vehicle based on a state-dependent Riccati equation technique and a nonlinear disturbance observer. The highly nonlinear dynamics of the hypersonic vehicle are firstly brought to a linear structure having a state-dependent coefficient form. And then a state-dependent Riccati equation is solved at each sampling moment to obtain a nonlinear feedback optimal control law. In order to enhance robustness of the closed-loop system, a nonlinear disturbance observer is introduced to estimate the uncertainty caused by parametric variations and external disturbances. The resulting composite controller achieves not only promising robustness and disturbance rejection performance but also flexible adjustment in the response time. Compared to a Kriging controller, the proposed controller has great advantages in the system response time and robustness. The feasibility of the proposed method is validated by simulation results.

About the authors

Weiqiang Tang

College of Electrical and Information Engineering; Key Laboratory of Gansu Advanced Control for Industrial Processes; National Experimental Teaching Center of Electrical and Control Engineering Lanzhou University of Technology

Author for correspondence.
Email: twqzjh@163.com
China, Lanzhou, 730050; Lanzhou, 730050; Lanzhou, 730050

Wenkun Long

College of Electrical and Information Engineering; Key Laboratory of Gansu Advanced Control for Industrial Processes

Email: twqzjh@163.com
China, Lanzhou, 730050; Lanzhou, 730050

Haiyan Gao

High-Voltage Key Laboratory of Fujian Province

Email: twqzjh@163.com
China, Xiamen, 361024

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