Identifying the drag parameters of unmanned aerial vehicles (UAVs) is crucial for guaranteeing their aerodynamic efficiency. However, in contrast to commercial aircraft, obtaining accurate UAV drag parameters is challenging because the existing approaches rely on analytical models or require accurate modeling of the engine thrust, which highly depends on time-varying wind conditions. To address this challenge, this paper first proposes a novel in-flight estimation algorithm for the air data (airspeed, angle of attack, and sideslip angle) and drag parameters of UAVs. With this approach, there is no need to compute all of the contributing components for drag, to model the thrust of the UAVs, or to perform complicated wind tunnel testing/computational fluid dynamics analysis to obtain the drag parameter. Instead, the proposed algorithm requires only standard sensors such as inertial measurement units and air data systems during gliding flight. Then, an efficient glide phase detection algorithm for initiating the filter is proposed. Simulation and experimental flight testing of a UAV demonstrate that the proposed algorithm yields accurate zero lift drag coefficient, attitude, and air data estimation results according to thorough validation with newly derived metrics for performance evaluation.


    Access

    Check access

    Check availability in my library

    Order at Subito €


    Export, share and cite



    Title :

    In-Flight Estimation of Drag Parameters and Air Data for Unmanned Aircraft


    Contributors:

    Published in:

    Publication date :

    2021-11-25


    Size :

    13 pages




    Type of media :

    Article (Journal)


    Type of material :

    Electronic Resource


    Language :

    English




    Drag/Thrust Estimation via Aircraft Performance Flight Testing

    Mendelboim, T. / Bettoun, M. / Englander, B. et al. | British Library Online Contents | 1992


    UNMANNED AIRCRAFT, UNMANNED AIRCRAFT FLIGHT CONTROLLER, UNMANNED AIRCRAFT FLIGHT CONTROL METHOD, AND PROGRAM

    CHRISTOPHER THOMAS RAABE / BERGSTROEM NIKLAS | European Patent Office | 2021

    Free access

    UNMANNED AIRCRAFT FLIGHT CONTROL DEVICE, UNMANNED AIRCRAFT FLIGHT CONTROL METHOD, AND UNMANNED AIRCRAFT FLIGHT CONTROL PROGRAM

    YOSHIFUKU YASUHIRO / TAKAHASHI YU / TOMONAGA YUKINOBU et al. | European Patent Office | 2018

    Free access

    UNMANNED AIRCRAFT, UNMANNED AIRCRAFT FLIGHT CONTROL DEVICE, UNMANNED AIRCRAFT FLIGHT CONTROL METHOD AND PROGRAM

    RAABE CHRISTOPHER THOMAS / BERGSTROM NIKLAS | European Patent Office | 2019

    Free access