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In-Ground-Effect Modeling and Nonlinear-Disturbance Observer for Multirotor Unmanned Aerial Vehicle Control

  • Xiang He
  • , Gordon Kou
  • , Marc Calaf
  • , Kam K. Leang*
  • *Corresponding author for this work
  • University of Utah
  • Wind Energy and Turbulence Laboratory

Research output: Contribution to journalArticlepeer-review

Abstract

This paper focuses on modeling and control of in-ground-effect (IGE) on multirotor unmanned aerial vehicles (UAVs). As the vehicle flies and hovers over, around, or underneath obstacles, such as the ground, ceiling, and other features, the IGE induces a change in thrust that drastically affects flight behavior. This effect on each rotor can be vastly different as the vehicle's attitude varies, and this phenomenon limits the ability for precision flight control, navigation, and landing in tight and confined spaces. An exponential model describing this effect is proposed, analyzed, and validated through experiments. The model accurately predicts the quasi-steady IGE for an experimental quadcopter UAV. To compensate for the IGE, a model-based feed-forward controller and a nonlinear-disturbance observer (NDO) are designed for closed-loop control. Both controllers are validated through physical experiments, where results show approximately 23% reduction in the tracking error using the NDO compared to the case when IGE is not compensated for.

Original languageEnglish
Article number071013
JournalJournal of Dynamic Systems, Measurement and Control
Volume141
Issue number7
DOIs
StatePublished - 1 Jul 2019
Externally publishedYes

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