Publication | Open Access
Multi-Objective Robust $H_{\infty}$ Control of Spacecraft Rendezvous
235
Citations
33
References
2009
Year
Spacecraft RendezvousEngineeringAerospace EngineeringSpace VehiclesRobust ControlMathematical Control TheoryGuidance SystemSpacecraft Rendezvous SystemsSystems EngineeringSpacecraft Attitude ControlParametric UncertaintiesTrajectory OptimizationRobust Hinfin ControlStability
Based on the relative motion dynamic model illustrated by C-W equations, the problem of robust Hinfin control for a class of spacecraft rendezvous systems is investigated, which contains parametric uncertainties, external disturbances and input constraints. An Hinfin state-feedback controller is designed via a Lyapunov approach, which guarantees the closed-loop system to meet the multi-objective design requirements. The existence conditions for admissible controllers are formulated in the form of linear matrix inequalities (LMIs), and the controller design is cast into a convex optimization problem subject to LMI constraints. An illustrative example is provided to show the effectiveness of the proposed control design method.
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