This paper investigates the stabilization problem for discrete-time linear controllable systems subject to actuator saturation. In the case of completely known plants, a control design technique based on a time varying sliding surface is proposed ensuring stabilization under the assumption of availability of all state measurements. Further, in the presence of matched disturbances with known constant bound, a discrete time sliding mode controller is proposed ensuring plant practical stabilization, and a conservative estimate of the attraction domain is given. Theoretical results have been validated by experimental data using a twin-rotor system.
Sliding-mode control of discrete-time linear plants with input saturation: application to a twin-rotor system / Corradini, M. L.; Cristofaro, A.; Orlando G., :. - In: INTERNATIONAL JOURNAL OF CONTROL. - ISSN 0020-7179. - 87:8(2014), pp. 1523-1535. [10.1080/00207179.2013.878039]
Sliding-mode control of discrete-time linear plants with input saturation: application to a twin-rotor system
Cristofaro A.
;
2014
Abstract
This paper investigates the stabilization problem for discrete-time linear controllable systems subject to actuator saturation. In the case of completely known plants, a control design technique based on a time varying sliding surface is proposed ensuring stabilization under the assumption of availability of all state measurements. Further, in the presence of matched disturbances with known constant bound, a discrete time sliding mode controller is proposed ensuring plant practical stabilization, and a conservative estimate of the attraction domain is given. Theoretical results have been validated by experimental data using a twin-rotor system.File | Dimensione | Formato | |
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