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Nonlinear Robust Control of a Hypersonic Flight Vehicle Using Fuzzy Disturbance Observer

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  • Lei Zhengdong
  • Wang Man
  • Yang Jianying

Abstract

This paper is concerned with a novel tracking controller design for a hypersonic flight vehicle in complex and volatile environment. The attitude control model is challengingly constructed with multivariate uncertainties and external disturbances, such as structure dynamic and stochastic wind disturbance. In order to resist the influence of uncertainties and disturbances on the flight control system, nonlinear disturbance observer is introduced to estimate them. Moreover, for the sake of high accuracy and sensitivity, fuzzy theory is adopted to improve the performance of the nonlinear disturbance observer. After the total disturbance is eliminated by dynamic inversion method, a cascade system is obtained and then stabilized by a sliding-mode controller. Finally, simulation results show that the strong robust controller achieves excellent performance when the closed-loop control system is influenced by mass uncertainties and external disturbances.

Suggested Citation

  • Lei Zhengdong & Wang Man & Yang Jianying, 2013. "Nonlinear Robust Control of a Hypersonic Flight Vehicle Using Fuzzy Disturbance Observer," Mathematical Problems in Engineering, Hindawi, vol. 2013, pages 1-10, October.
  • Handle: RePEc:hin:jnlmpe:369092
    DOI: 10.1155/2013/369092
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