Abstract
Based on the relative motion dynamic model illustrated by C-W equations, the problem of robust H∞ control for a class of spacecraft rendezvous systems is investigated, which contains parametric uncertainties, external disturbances and input constraints. An H∞ 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 liner 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. © 2009 IEEE.
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Gao, H., Yang, X., & Shi, P. (2009). Multi-objective robust H∞ control of spacecraft rendezvous. IEEE Transactions on Control Systems Technology, 17(4), 794–802. https://doi.org/10.1109/TCST.2008.2012166
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