Extended State Observer Based Robust Position Tracking Control Using Nonlinear Damping Gain for Quadrotors With External Disturbance

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초록

We propose an extended-state-observer (ESO)-based robust position tracking control method using nonlinear damping gain to improve the control performance under external disturbances and parameter uncertainties for quadrotors. The proposed method consists of an ESO and a nonlinear damping controller (NDC). The ESO is designed to estimate full state and disturbance. The external disturbance, velocity dynamics, and the uncertainty of the input parameter are lumped in the disturbance. The NDC is developed via backstepping procedure to suppress the output tracking error according to the disturbance estimation error. The proposed method is simple and robust against external disturbance and parameter uncertainties. In addition, only the nominal value of the input gain parameters are required. The closed-loop stability is proven by using the input-to-state stability property. The position tracking performance of proposed method was verified by performing hardware-in-the-loop simulations using a quadrotor platform.

키워드

RobustnessObserversDampingStability analysisUncertain systemsUncertaintyBacksteppingExtended state observer (ESO)nonlinear damping contol (NDC)quadrotorrobust position controlhardware-in-the-loop-simulation (HILS)SLIDING MODE CONTROLATTITUDE-CONTROLBACKSTEPPING CONTROLSUBJECT
제목
Extended State Observer Based Robust Position Tracking Control Using Nonlinear Damping Gain for Quadrotors With External Disturbance
저자
You, SesunKim, KwanyeonMoon, JunKim, Wonhee
DOI
10.1109/ACCESS.2020.3025969
발행일
2020-09
유형
Article
저널명
IEEE Access
8
페이지
174558 ~ 174567

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