Output-feedback sliding mode control for a linear multicompartment lung mechanics system

Control Applications(2013)

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摘要
In this paper, an output-feedback sliding mode control (SMC) for a linear multicompartment respiratory system is developed. Since the applied input pressure to the lungs is in general nonnegative and cannot be arbitrarily large, as not to damage the lungs, a sliding mode control with bounded nonnegative control inputs is proposed. The controller only uses output information (i.e., the total volume of the lungs) and automatically adjusts the applied input pressure so that the system is able to track a given reference signal in the presence of parameter uncertainty (i.e., modelling uncertainty of the lung resistances and lung compliances) and system disturbances. Controllers for both matched and unmatched uncertainty are presented. Specifically, a Lyapunov-based approach is presented for the stability analysis of the system and the proposed control framework is applied to a two-compartment lung model to show the efficacy of the proposed control method.
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关键词
Lyapunov methods,feedback,linear systems,medical control systems,pressure control,respiratory protection,stability,uncertain systems,variable structure systems,Lyapunov-based approach,SMC,bounded nonnegative control inputs,input pressure adjustment,linear multicompartment lung mechanics system,linear multicompartment respiratory system,lung compliances,lung resistances,matched uncertainty,modelling uncertainty,output-feedback sliding mode control,parameter uncertainty,stability analysis,unmatched uncertainty
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