• Electronics Optics & Control
  • Vol. 27, Issue 7, 58 (2020)
CHEN Xiaolei
Author Affiliations
  • [in Chinese]
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    DOI: 10.3969/j.issn.1671-637x.2020.07.011 Cite this Article
    CHEN Xiaolei. A Hybrid Trajectory Tracking Control Algorithm for a Quadrotor Aircraft[J]. Electronics Optics & Control, 2020, 27(7): 58 Copy Citation Text show less
    References

    [1] GUZEY H M, DIERKS T, JAGANNATHAN S, et al.Modified consensus-based output feedback control of quadrotor UAV formations using neural networks[J].Journal of Intelligent & Robotic Systems, 2019, 94(1):283-300.

    [2] ZHANG Y, CHEN Z, ZHANG X, et al.A novel control scheme for quadrotor UAV based upon active disturbance rejection control[J].Aerospace Science and Technology, 2018, 79:601-609.

    [3] JAFARI H, ZAREH M, ROSHANIAN J, et al.An optimal guidance law applied to quadrotor using LQR method[J].Transactions of the Japan Society for Aeronautical and Space Sciences, 2010, 53(179):32-39.

    [4] RAFFO G V, ORTEGA M G, RUBIO F R.An integral predictive/nonlinear H∞ control structure for a quadrotor helicopter[J].Automatica, 2010, 46(1):29-39.

    [6] SALIH A L, MOGHAVVEMI M, MOHAMED H A F, et al.Flight PID controller design for a UAV quadrotor[J].Scientific Research and Essays, 2010, 5(23):3660-3667.

    [8] LI J, LI R, ZHENG H.Quadrotor modeling and control based on linear active disturbance rejection control[C]//The 35th Chinese Control Conference(CCC), IEEE, 2016:10651-10656.

    [9] MOHD A M B, ABDUL R H, DANAPALASINGAM K A.A hybrid optimal backstepping and adaptive fuzzy control for autonomous quadrotor helicopter with time-varying disturbance[J].Proceedings of the Institution of Mechanical Engineers, Part G:Journal of Aerospace Engineering, 2015, 229(12):2178-2195.

    [10] ANSARI U, BAJODAH A H, HAMAYUN M T.Quadrotor control via robust generalized dynamic inversion and adaptive non-singular terminal sliding mode[J].Asian Journal of Control, 2019, 4(21):1-13.

    [11] POWERS C, MELLINGER D, KUMAR V.Quadrotor kinematics and dynamics[M]//KIMON P V, GEORGE J V.Handbook of unmanned aerial vehicles.Dordrecht:Springer, 2015:307-328.

    [12] MA D, XIA Y, LI T, et al.Active disturbance rejection and predictive control strategy for a quadrotor helicopter[J].IET Control Theory & Applications, 2016, 10(17):2213-2222.

    [13] RAMREZ-NERIA M, SIRA-RAMREZ H, GARRIDO-MOCTEZUMA R, et al.Linear active disturbance rejection control of underactuated systems:the case of the furuta pendulum[J].ISA Transactions, 2014, 53(4):920-928.

    [14] TAN W, FU C.Linear active disturbance-rejection control:analysis and tuning via IMC[J].IEEE Transactions on Industrial Electronics, 2015, 63(4):2350-2359.

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    CHEN Xiaolei. A Hybrid Trajectory Tracking Control Algorithm for a Quadrotor Aircraft[J]. Electronics Optics & Control, 2020, 27(7): 58
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