Robust switching output feedback control of discrete-time linear polytopic uncertain systems
This paper presents a new switching control approach for robust output feedback control of a class of discrete-time linear systems subject to polytopic time-varying uncertainties. The proposed robust switching controller, which stabilizes the closed-loop system with a pre-specified H ∞ performance l...
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          | Published in | 2015 34th Chinese Control Conference (CCC) pp. 2973 - 2978 | 
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| Main Authors | , , | 
| Format | Conference Proceeding Journal Article | 
| Language | English | 
| Published | 
            Technical Committee on Control Theory, Chinese Association of Automation
    
        01.07.2015
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| Subjects | |
| Online Access | Get full text | 
| ISSN | 1934-1768 | 
| DOI | 10.1109/ChiCC.2015.7260096 | 
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| Abstract | This paper presents a new switching control approach for robust output feedback control of a class of discrete-time linear systems subject to polytopic time-varying uncertainties. The proposed robust switching controller, which stabilizes the closed-loop system with a pre-specified H ∞ performance level, consists of a family of dynamic output feedback controllers (of an arbitrary state order) and a switching law (the relaxed min-switching strategy). Both stability analysis and control synthesis conditions are derived using a piecewise quadratic Lyapunov function. The switching law combined with the controller gain matrices are jointly synthesized by solving a convex linear matrix inequality (LMI) based optimization problem. An academic example has been used to demonstrate the effectiveness and advantages of the proposed approach. | 
    
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| AbstractList | This paper presents a new switching control approach for robust output feedback control of a class of discrete-time linear systems subject to polytopic time-varying uncertainties. The proposed robust switching controller, which stabilizes the closed-loop system with a pre-specified H ∞ performance level, consists of a family of dynamic output feedback controllers (of an arbitrary state order) and a switching law (the relaxed min-switching strategy). Both stability analysis and control synthesis conditions are derived using a piecewise quadratic Lyapunov function. The switching law combined with the controller gain matrices are jointly synthesized by solving a convex linear matrix inequality (LMI) based optimization problem. An academic example has been used to demonstrate the effectiveness and advantages of the proposed approach. This paper presents a new switching control approach for robust output feedback control of a class of discrete-time linear systems subject to polytopic time-varying uncertainties. The proposed robust switching controller, which stabilizes the closed-loop system with a pre-specified H sub( infinity ) performance level, consists of a family of dynamic output feedback controllers (of an arbitrary state order) and a switching law (the relaxed min-switching strategy). Both stability analysis and control synthesis conditions are derived using a piecewise quadratic Lyapunov function. The switching law combined with the controller gain matrices are jointly synthesized by solving a convex linear matrix inequality (LMI) based optimization problem. An academic example has been used to demonstrate the effectiveness and advantages of the proposed approach.  | 
    
| Author | Yuan Chengzhi Wu Fen Duan Chang  | 
    
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| PublicationTitle | 2015 34th Chinese Control Conference (CCC) | 
    
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| SubjectTerms | Closed loop systems Conferences Control systems Controllers Dynamics Linear systems LMIs with linear search Lyapunov functions min-switching logic Output feedback polytopic time-varying uncertainties Robust control Robustness Strategy Switches Switching Time-varying systems  | 
    
| Title | Robust switching output feedback control of discrete-time linear polytopic uncertain systems | 
    
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