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Attitude stabilization of rigid spacecraft with finite‐time convergence
965
Citations
22
References
2010
Year
EngineeringRobust ControlSpacecraft Attitude ControlSpacecraft ModelStabilization TechniqueStabilitySpace VehiclesGuidance SystemNonlinear Control (Control Engineering)Nonlinear ControlRigid SpacecraftMotion ControlAdaptive MethodAerospace EngineeringInertia UncertaintyMechanical SystemsBusinessAdaptive ControlNonlinear Control (Business Management)
Abstract The problem of attitude control for a spacecraft model which is nonlinear in dynamics with inertia uncertainty and external disturbance is investigated in this paper. Two sliding mode controllers are proposed to force the state variables of the closed‐loop system to converge to the origin in finite time. Specially, the second control design consists of the estimation of the uncertainty and disturbance by adaptive method and thus it achieves the decrease of undesired chattering effectively. Also, simulation results are presented to illustrate the effectiveness of the control strategies. Copyright © 2010 John Wiley & Sons, Ltd.
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