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Nonlinear robust control of hypersonic aircrafts with interactions between flight dynamics and propulsion systems

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Abstract

This paper addresses the nonlinear robust tracking controller design problem for hypersonic vehicles. This problem is challenging due to strong coupling between the aerodynamics and the propulsion system, and the uncertainties involved in the vehicle dynamics including parametric uncertainties, unmodeled model uncertainties, and external disturbances. By utilizing the feedback linearization technique, a linear tracking error system is established with prescribed references. For the linear model, a robust controller is proposed based on the signal compensation theory to guarantee that the tracking error dynamics is robustly stable. Numerical simulation results are given to show the advantages of the proposed nonlinear robust control method, compared to the robust loop-shaping control approach.

Original languageEnglish
Pages (from-to)1-11
Number of pages11
JournalISA Transactions
Volume64
DOIs
StatePublished - 1 Sep 2016

Keywords

  • Coupling
  • Hypersonic vehicle
  • Nonlinear control
  • Robust control

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