• DocumentCode
    3686382
  • Title

    Run-to-run disturbance rejection for feedforward path following of an adaptively controlled unmanned helicopter

  • Author

    Johann C. Dauer;Timm Faulwasser;Sven Lorenz

  • Author_Institution
    Department of Unmanned Aircraft, Institute of Flight Systems, DLR (German Aerospace Center), 38108 Braunschweig, Germany
  • fYear
    2015
  • Firstpage
    1779
  • Lastpage
    1785
  • Abstract
    We present a scheme for run-to-run disturbance rejection in optimization-based feedforward path following of a remotely piloted aircraft system (RPAS). The proposed scheme is based on the inter-run estimation of unknown disturbances, such as wind induced forces and model uncertainties. These disturbance estimates are introduced in an optimal control problem used to compute feedforward controls. In order to achieve good run-to-run disturbance rejection, the structure of the underlying stabilizing flight control of the RPAS is taken into account. In this work, we consider flight control based on adaptive reference following and the special case of the unmanned helicopter ARTIS. We present simulation results and flight test data. These results underpin that the proposed approach significantly decreases flight path deviations in a run-to-run fashion.
  • Keywords
    "Helicopters","Feedforward neural networks","Adaptation models","Optimization","Aerodynamics","Acceleration","Control systems"
  • Publisher
    ieee
  • Conference_Titel
    Control Applications (CCA), 2015 IEEE Conference on
  • Type

    conf

  • DOI
    10.1109/CCA.2015.7320867
  • Filename
    7320867