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Robust back-stepping output feedback trajectory tracking for quadrotors via extended state observer and sigmoid tracking differentiator

  • Xingling Shao*
  • , Jun Liu
  • , Honglun Wang
  • *Corresponding author for this work
  • North University of China

Research output: Contribution to journalArticlepeer-review

Abstract

In this paper, a robust back-stepping output feedback trajectory tracking controller is proposed for quadrotors subject to parametric uncertainties and external disturbances. Based on the hierarchical control principle, the quadrotor dynamics is decomposed into translational and rotational subsystems to facilitate the back-stepping control design. With given model information incorporated into observer design, a high-order extended state observer (ESO) that relies only on position measurements is developed to estimate the remaining unmeasurable states and the lumped disturbances in rotational subsystem simultaneously. To overcome the problem of “explosion of complexity” in the back-stepping design, the sigmoid tracking differentiator (STD) is introduced to compute the derivative of virtual control laws. The advantage is that the proposed controller via output-feedback scheme not only can ensure good tracking performance using very limited information of quadrotors, but also has the ability of handling the undesired uncertainties. The stability analysis is established using the Lyapunov theory. Simulation results demonstrate the effectiveness of the proposed control scheme in achieving a guaranteed tracking performance with respect to an 8-shaped reference trajectory.

Original languageEnglish
Pages (from-to)631-647
Number of pages17
JournalMechanical Systems and Signal Processing
Volume104
DOIs
StatePublished - 1 May 2018

Keywords

  • Back-stepping
  • Explosion of complexity
  • Extended state observer (ESO)
  • Output feedback
  • Quadrotor
  • Sigmoid tracking differentiator

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