Active Disturbance Rejection Attitude Control for a Bird-Like Flapping Wing Micro Air Vehicle During Automatic Landing

To solve the attitude control problem of bird-like flapping wing micro air vehicles (FWMAVs) during automatic landing, an active disturbance rejection control (ADRC) architecture is proposed in this paper. This control scheme takes into account the attitude control of flapping, transition and glidin...

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Main Authors: Shaoran Liang, Bifeng Song, Jianlin Xuan
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9199860/
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spelling doaj-ba988da0a78b48b3b69f69c5900fe1492021-03-30T03:59:37ZengIEEEIEEE Access2169-35362020-01-01817135917137210.1109/ACCESS.2020.30247939199860Active Disturbance Rejection Attitude Control for a Bird-Like Flapping Wing Micro Air Vehicle During Automatic LandingShaoran Liang0https://orcid.org/0000-0002-6427-4057Bifeng Song1https://orcid.org/0000-0002-6427-4057Jianlin Xuan2https://orcid.org/0000-0002-6427-4057School of Aeronautics, Northwestern Polytechnical University, Xi’an, ChinaSchool of Aeronautics, Northwestern Polytechnical University, Xi’an, ChinaYangtze River Delta Research Institute, Northwestern Polytechnical University, Taicang, ChinaTo solve the attitude control problem of bird-like flapping wing micro air vehicles (FWMAVs) during automatic landing, an active disturbance rejection control (ADRC) architecture is proposed in this paper. This control scheme takes into account the attitude control of flapping, transition and gliding modes in the process of automatic landing. To verify the control effect, the aerodynamic estimation method of the flapping wing based on quasi-steady theory and the dynamics of an FWMAV in Lagrangian form are applied in the simulation. The proposed control architecture consists of two independent ADRC controllers to stabilize the attitude of the pitch and roll channels. The system disturbance and the coupling effects between channels are estimated by an extended state observer (ESO) and compensated in real time in the control output. The convergence of the ESO and ADRC is proven. Simulation results show that even if the aircraft is in different flight modes, the ADRC controller can track the target trajectory quickly and accurately. Then, to realize automatic landing in a real environment, a simplified two-stage landing trajectory is designed. A landing test is carried out on this basis. The test results show that ADRC can not only stabilize the flight attitude in flapping mode but also obtain a satisfactory control accuracy and convergence speed when the aircraft is in the transition and gliding modes, confirming its usefulness in automatic landing.https://ieeexplore.ieee.org/document/9199860/Flapping wing micro air vehicleactive disturbance rejection controlattitude control automatic landing
collection DOAJ
language English
format Article
sources DOAJ
author Shaoran Liang
Bifeng Song
Jianlin Xuan
spellingShingle Shaoran Liang
Bifeng Song
Jianlin Xuan
Active Disturbance Rejection Attitude Control for a Bird-Like Flapping Wing Micro Air Vehicle During Automatic Landing
IEEE Access
Flapping wing micro air vehicle
active disturbance rejection control
attitude control automatic landing
author_facet Shaoran Liang
Bifeng Song
Jianlin Xuan
author_sort Shaoran Liang
title Active Disturbance Rejection Attitude Control for a Bird-Like Flapping Wing Micro Air Vehicle During Automatic Landing
title_short Active Disturbance Rejection Attitude Control for a Bird-Like Flapping Wing Micro Air Vehicle During Automatic Landing
title_full Active Disturbance Rejection Attitude Control for a Bird-Like Flapping Wing Micro Air Vehicle During Automatic Landing
title_fullStr Active Disturbance Rejection Attitude Control for a Bird-Like Flapping Wing Micro Air Vehicle During Automatic Landing
title_full_unstemmed Active Disturbance Rejection Attitude Control for a Bird-Like Flapping Wing Micro Air Vehicle During Automatic Landing
title_sort active disturbance rejection attitude control for a bird-like flapping wing micro air vehicle during automatic landing
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description To solve the attitude control problem of bird-like flapping wing micro air vehicles (FWMAVs) during automatic landing, an active disturbance rejection control (ADRC) architecture is proposed in this paper. This control scheme takes into account the attitude control of flapping, transition and gliding modes in the process of automatic landing. To verify the control effect, the aerodynamic estimation method of the flapping wing based on quasi-steady theory and the dynamics of an FWMAV in Lagrangian form are applied in the simulation. The proposed control architecture consists of two independent ADRC controllers to stabilize the attitude of the pitch and roll channels. The system disturbance and the coupling effects between channels are estimated by an extended state observer (ESO) and compensated in real time in the control output. The convergence of the ESO and ADRC is proven. Simulation results show that even if the aircraft is in different flight modes, the ADRC controller can track the target trajectory quickly and accurately. Then, to realize automatic landing in a real environment, a simplified two-stage landing trajectory is designed. A landing test is carried out on this basis. The test results show that ADRC can not only stabilize the flight attitude in flapping mode but also obtain a satisfactory control accuracy and convergence speed when the aircraft is in the transition and gliding modes, confirming its usefulness in automatic landing.
topic Flapping wing micro air vehicle
active disturbance rejection control
attitude control automatic landing
url https://ieeexplore.ieee.org/document/9199860/
work_keys_str_mv AT shaoranliang activedisturbancerejectionattitudecontrolforabirdlikeflappingwingmicroairvehicleduringautomaticlanding
AT bifengsong activedisturbancerejectionattitudecontrolforabirdlikeflappingwingmicroairvehicleduringautomaticlanding
AT jianlinxuan activedisturbancerejectionattitudecontrolforabirdlikeflappingwingmicroairvehicleduringautomaticlanding
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