Local reliable control for linear systems with saturating actuators
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Huang, Shoudong
Lam, James
Chen, Bing
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Abstract
This paper considers the problem of local reliable control for continuous-time linear systems with saturating actuators and disturbances. The local stability and the performance of the designed closed-loop system is guaranteed not only when all control components are operational, but also in case of actuator outages in the preselected subset of actuators. Linear matrix inequality (LMI) method and iterative LMI (ILMI) method are proposed to design state-feedback controllers. The effectiveness of our methods is shown by an example.
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Proceedings of the IEEE Conference on Decision and Control
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